Solar Powered Multilingual Emergency Response Robot And Interactive Artificial Intelligence System For Detecting Hazardous Conditions Within a Motor Vehicle For Prevention of Vehicle Related Deaths.
20240046719 ยท 2024-02-08
Inventors
Cpc classification
H04W4/44
ELECTRICITY
G06V20/597
PHYSICS
H04W4/90
ELECTRICITY
B60R21/0173
PERFORMING OPERATIONS; TRANSPORTING
International classification
G07C5/08
PHYSICS
H04W4/90
ELECTRICITY
B60H1/00
PERFORMING OPERATIONS; TRANSPORTING
G06V20/59
PHYSICS
Abstract
Presented is an artificial intelligence interactive Emergency Response Robot for detecting hazardous conditions within a motor vehicle for the prevention of vehicle related deaths.
A Virtual Robot based on IBM's Watson cognitive super-computing platform continuously monitors the internal and external environment of the motor vehicle and will automatically commence a rescue sequence in the event it detects a dangerous condition such as a child, or pet left abandoned in an overheated vehicle is detected.
When life threatening conditions are detected, the robot's ai simulates a human emergency responder to immediately dispatch assistance to the location and will assume control of the vehicle's electronic system to make adjustments in the environment.
The invention functions provides a universal method of connecting artificial intelligence to any vehicle for preserving lives and a method for speedy assistance to victims, and emergency response teams interacting in real time and will substantially decrease vehicle related deaths.
Claims
1. A solar powered multilingual emergency response robot and interactive artificial intelligence system contained within a wireless vehicle data recorder for detecting hazardous conditions within a motor vehicle for prevention of vehicle related deaths, comprising: means for capturing vehicle environmental data for transmission to said vehicle data recorder and interactive artificial intelligence system for continuous data analysis of the vehicle's environment, global communications to end-users, and providing global positioning location for physical location of the vehicle in the event of an emergency, and for local storage of artificial intelligence modules; means for sensing and analysis of vehicle temperature and hazardous environments within the motor vehicle for transmission to the artificial intelligence system for data analysis of potential vehicle emergency and follow up; means for an artificial intelligence system for cognitive analysis and interaction with internal ai modules contained within said wireless data recorder for making rescue decisions based on the vehicle's environment, location, and human resources available; means for a front camera constructed to said wireless data recorder for ai viewing inside of the motor vehicle and utilized as a cognitive eye for ai analysis and remote viewing of the internal and external environment of the vehicle; means for a rear camera for ai viewing outside of the motor vehicle and utilized as a cognitive eye for ai analysis of the external environment of the motor vehicle; means for allowance of cellular communications and sim chips constructed to said vehicle data recorder for interconnecting to a cellular network for transmission and exchange of data to the artificial intelligence system; means for allowance of satellite communications and satellite wireless interface constructed to said wireless vehicle data recorder for interconnecting to a satellite network for transmission and exchange of data to the artificial intelligence system; means for capturing the motor vehicle's environmental data for transmission to the artificial intelligence system for continuous data analysis of the vehicle's internal and external environment capable of global interactive communications to end-users and global positioning location for computation of the physical location of the motor vehicle in event of a vehicle emergency, and for local storage of the artificial intelligence modules; means for internal artificial intelligence within said wireless vehicle data recorder, interactive communication with first responders, social media networks, and public emergency broadcast systems; means for an artificial intelligence system for cognitive analysis and interaction with an internal ai robot contained with the wireless vehicle data recorder for making rescue decisions based on the motor vehicle's hazardous environment, location, and resources available; means for capturing vehicle environmental data for transmission to an ai based super computer for continuous data analysis of the vehicle's environment, global communications to end-users, providing global positioning location for computation of the physical location of the motor vehicle in the event of a hazardous environment and emergency; means for interconnecting said wireless vehicle data recorder to satellite networks systems for receiving data to a wireless vehicle data recorder system for analysis of a hazardous environment; means for providing a local, national, and international network of human first responders for addressing emergencies and hazardous environments received by the artificial intelligence system; means for establishing interactive voice and data communications to social networks with the artificial intelligence system and interacting with human users connected to international social networks; means for an ai based robot for broadcasting hazardous incidents to public emergency broadcast systems to increase the chances of a successful rescue occurring at a gps computed physical location occurring within the motor vehicle; means for interstellar space networking via satellite network communicating to the said vehicle data recorder, to the artificial intelligence system for international global communications and connectivity of said vehicle data recorder; means for interconnecting to satellite networks and general satellite networking for the wireless vehicle data recorder system; means for computing the precise physical location of vehicle data recorder and location of a distressed vehicle that needs emergency services; means for independent artificial intelligence interactive communication with first responders, social media networks, and public emergency broadcast systems; means for capturing vehicle environmental data for transmission to said artificial intelligence system for continuous data analysis of the vehicle's environment, global communications to end-users, and providing global positioning location for physical location of the vehicle in the event of an emergency, and for local storage of artificial intelligence modules; means for interfacing the wireless data vehicle recorder to social networks and for general internet communications, voice, video and data communications using internet protocol; means for interstellar networking of the wireless vehicle data recorder for international global communications and connectivity of said wireless vehicle data recorder to a satellite network; means for artificial intelligence system for cognitive analysis and interaction with said wireless vehicle data recorder in making rescue decisions based on vehicle's hazardous environment, physical location, and for providing interactive global communications to human resources and emergency first responders available for dispatch to a predetermined physical location without human intervention; means for providing a cellular network and data interconnectivity for the wireless vehicle data recorder, and wireless exchange of data from the motor vehicle's environment to emergency first responders for immediate follow-up for preservation of human life; means for said artificial intelligence interactive communication with ai based super-computers, first responders, social media networks, and public emergency broadcast systems for preservation of life; means for allowance of cellular sim chips for connecting to a cellular network for transmission and exchange of data to external artificial intelligence systems; means for providing a central cognitive operating system utilized as a basis for said wireless vehicle data recorder and ai modules providing the most advanced artificial intelligence platform for dispatching emergency personnel help without the need for human intervention; means for an artificial intelligence system for cognitive analysis and interaction with ai software in making rescue decisions based on the vehicle's hazardous environment, location, and rescue resources available; means for providing the basic ai model for establishing the general knowledge base of the artificial intelligence robot based on transfer learning enabling machine learning of a simulated human emergency responder, medical doctor, and related knowledge of the emergency response industry; means for providing a fully trained ai capable of remote visual viewing, and remote communications for determining the safety status of the physical environment of the motor vehicle for ai processing and transmission of critical environmental data for immediate decision making regarding the safety status of a motor vehicle and occupants; means for providing a trained ai for remotely controlling windows of vehicle by the said artificial intelligence system to third party human emergency responders for immediate dispatch of emergency first responder personnel; means for providing a trained ai module for controlling the air conditioning and heating system of a motor vehicle and for making environmental changes automatically without the need of human intervention; means for providing a trained ai for robotic and remote control of the motor vehicle's horn for getting attention to a distressed motor vehicle requiring emergency assistance; means for providing a trained ai for controlling the headlights of the motion vehicle to draw attention to a distressed situation requiring emergency response assistance; means for providing a trained ai for broadcasting emergencies to social networks, emergency first responder networks, and public broadcast systems for immediately identifying hazardous situation and immediate dispatch and emergency assistance to the physical location of the motor vehicle; means for providing a trained ai for machine intervention for interactive communications to first responders, social network users, and for providing immediate robotic human-like interactive assistance with emergency responders when a hazardous environment is detected; means for providing a trained ai for broadcasting emergencies to social networks, emergency first responder networks, and public broadcast systems; means for providing an ai for controlling the headlights of the motor vehicle to draw attention to a distressed situation requiring emergency response, while simultaneously communicating with a trained ai module for controlling the air conditioning and heating system of the motor vehicle for making environmental changes automatically, by said artificial intelligence system; means for providing a trained ai for self-checking the status of the motor vehicle's environment and the ongoing well being and functionality of the vehicle data recorder and internal ai software systems; means for providing a trained ai to broadcast the status of a motor vehicle's physical environment to emergency first responders, public emergency broadcast systems, and general authorized users while simultaneously providing interactive voice and data communication for purposes of enlisting emergency assistance to distressed vehicles requiring emergency assistance for the perseveration of human and animal life within said motor vehicle for the preservation of human and pet life; means for providing a fully trained ai for interacting with human users and executing commands necessary for a successful rescue efforts while simultaneously allowing users and first responders to have human-like dialog with said artificial language in any language; means for broadcasting hazardous incidents to public emergency broadcast systems to increase the chances of a successful rescue; means for establishing interactive communications to social networks with said artificial intelligence system while simultaneously interacting with users connected to international social networks, for providing a local, national, and international network to human first responders for addressing the motor vehicle's emergencies received by the artificial intelligence system; means for providing a trained ai continuously monitoring and reporting on safety of the motor vehicle's internal and external environment, while simultaneously predicting failures, automatically fixing problems before they occur, and for triggering robotic control to eliminate any hazardous environments, for simultaneously providing telecommunications to human operators in the event of an uncontrolled and unexpected hazardous events for the preservation of life; means for providing a trained ai for machine intervention to first responders, social network users, for providing immediate robotic human-like interactive assistance with emergency responders when a hazardous environment is detected; means for providing a electro acoustic device as an audio system capable of hearing output messages from said artificial intelligence system to emergency first responders, while simultaneously providing for continuous monitoring and capturing vehicle environmental data for continuous data analysis of the vehicle's environment; means for providing an electromechanical input device for transmitting voice commands to the said artificial intelligence using a microphone use, while simultaneously responding to emergency responders via audio; means for providing solar power management to the said wireless vehicle data recorder an an independent power source for keeping internal batteries charged and providing continuous power to the wireless vehicle data recorder for continuous analysis of the vehicle's environment for providing continuous power and use of the artificial intelligence system; means for the wireless data recorder to be powered by ac/dc electrical power source, battery source and for capturing vehicle environmental data for ongoing real-time transmission to the artificial intelligence system for uninterrupted power and real-time communication for ongoing operation of the wireless data recorder without the loss of electrical power; means for providing a gps receiver constructed to the wireless vehicle data recorder that is capable of receiving gps data from gps satellites for determining the physical position of the said wireless vehicle data recorder of the said motor vehicle while simultaneous providing ai analyzing the GPS satellite signals received from GPS satellites, for computing the exact physical position of said motor vehicle.
1. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, comprises an ai software based robot for detecting hazardous environments within a motor vehicle for immediate dispatch of emergency response personnel for the preservation of life.
2. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for capturing vehicle environmental data for transmission to an ai based super-computer for continuous data analysis of the vehicle's environment, global communications to end-users, and providing global positioning location for physical location of the vehicle in the event of an emergency, and for local storage of the artificial intelligence modules comprises a gps/bluetooth enabled wireless vehicle data recorder system.
3. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for sensing and analysis of vehicle temperature and hazardous environments within a motor vehicle for transmission to artificial intelligence super-computer for analysis and follow up comprises an environmental temperature sensor.
4. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for artificial intelligence system for cognitive analysis and interaction with a ai based robot in making rescue decisions based on vehicle's environment, location, and resources available comprises a Watson cognitive computing platform.
5. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for a front camera for ai viewing inside of a motor vehicle and utilized as a cognitive eye for ai analysis and remote viewing of the internal environment comprises an ai based front smart camera.
6. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for a rear camera for ai viewing outside of motor vehicle and utilized as a cognitive eye for analysis of the external environment of a motor vehicle comprises an ai based rear smart camera.
7. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for allowance of cellular sim chips for connecting to a cellular network for transmission and exchange of data to a super-computer comprises a sim card slot for interfacing to cellular networks.
8. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for independent artificial intelligence interactive communication with first responders, social media networks, and public emergency broadcast systems comprises a a.i based cyborg robot module.
9. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for interconnecting to satellite networks and general satellite networking for the wireless vehicle data recorder system comprises a satellite interface antenna.
10. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a local, national, and international network of human first responders for immediately addressing emergencies comprises a first responder network.
11. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for establishing interactive communications to social networks interacting with users connected to international social networks comprise a social media network.
12. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for broadcasting hazardous incidents to public emergency broadcast systems to increase the chances of a successful rescue comprises a public emergency broadcast system.
13. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for interstellar networking of the wireless vehicle data recorder international global communications and connectivity of said wireless vehicle data recorder comprises a satellite network.
14. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for computing the precise physical location of said vehicle data recorder and location of a distressed vehicle that requires emergency services comprises a GPS satellite network.
15. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for interfacing to social networks and for general internet communications, voice, video, and data communications using internet protocol comprises the internet.
16. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a cellular network and data interconnectivity for said wireless vehicle data recorder, comprises a wireless data connection for exchange of data from the physical environmental of the motor vehicle comprises a cellular network.
17. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing the central cognitive operating system utilized as a basis for artificial intelligence for providing the most advanced artificial intelligence platform comprises a deep qa software architecture.
18. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing the basic ai model for establishing the general knowledge of said robot using transfer learning enabling machine learning of simulating emergency responders, medical doctor, and related knowledge of the emergency response industry comprises a 3-tier artificial intelligence model.
19. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a fully trained ai capable of, remote visual viewing, and determining the safety status of the physical environment of a motor vehicle for ai processing and transmission to a ai based super-computer for immediate decision making regarding the safety status of a motor vehicle and occupants comprises a smart recognition camera module.
20. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a trained ai for remotely controlling windows of vehicle or remote control by third party human emergency responders comprises a window controller module.
21. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a trained ai module for controlling the air conditioning and heating system of a motor vehicle and for making environmental changes automatically, and remote access to emergency response personnel comprises an air conditioner heater controller module.
22. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a trained ai for robotic and remote control of a motor vehicle's horn for getting attention to a distressed motor vehicle comprises a horn blower controller module.
23. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing an ai for controlling the headlights of a motor vehicle to draw attention to a distressed situation requiring emergency response comprises a headlight controller module.
24. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a trained ai for broadcasting emergencies to social networks, emergency first responder networks, and public broadcast systems comprises a broadcast controller ai module.
25. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a trained ai for machine intervention to first responders, social network users, for providing immediate robotic human-like interactive assistance with emergency responders when a hazardous environment is detected comprises a cyborg intervention ai module.
26. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a trained ai module for self-checking the status of the environment and the ongoing well being and functionality of the vehicle data recorder and internal ai software systems comprises a self checking system for checking the status of emergency response system.
27. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for provided a trained ai to broadcast the status of a motor vehicle's physical environment to emergency first responders, public emergency broadcast systems, and general authorized users comprises a broadcast status of any kind of motor vehicle.
28. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a fully trained ai for interacting with human users and executing voice commands necessary for a successful rescue effort and allowing users and first responders to have dialog with the ai system in any language, comprises an interactive artificial intelligence conversational mode controller.
29. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing a trained ai continuously monitoring and reporting on safety of the motor vehicle's internal and external environment, predicting failures, automatically fixing problems before they occur, and for triggering a cyborg for robotic control to eliminate a hazardous environments and for providing telecommunications to human operators in events of an uncontrolled hazardous event comprises a continuous monitor controller.
30. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing electro acoustic device audio system for hearing output messages from the emergency response robot and emergency first responders comprises a loud speaker.
31. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing an electromechanical device to transmit voice commands for responding to emergency responders comprises a microphone.
32. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing solar power management to the wireless vehicle data recorder system and independent power source for keeping internal batteries charge and providing continuous power to said wireless vehicle data recorder system comprises a solar panel charging system for keeping the internal batteries fully charged for continuous operation without interruption.
33. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing the motor vehicle's wireless data recorder to be powered by ac/dc electrical power comprises an ac/dc power port.
34. The solar powered multilingual emergency response robot and interactive artificial intelligence system in accordance with claim 1, wherein said means for providing gps coordinates that can determine physical position of the wireless vehicle data recorder and vehicle by analyzing the gps satellite signals it receives from GPS satellites comprises a gps receiver.
35. A solar powered multilingual emergency response robot and interactive artificial intelligence system and ai robot for detecting any hazardous conditions within a motor vehicle for prevention of vehicle related deaths, comprising: a gps/Bluetooth enabled wireless vehicle data recorder system, for capturing vehicle environmental data for transmission to an ai super-computer for continuous data analysis of the vehicle's environment, global communications to end-users, and providing global positioning location for physical location of the vehicle in the event of an emergency, and for local storage of the artificial intelligence modules; an environmental temperature sensor, for sensing and analysis of vehicle temperature and hazardous environments within a motor vehicle for transmission to an ai based super-computer for determining the safety status of said motor vehicle; a cognitive computing platform, for artificial intelligence system for cognitive analysis and interaction with artificial intelligence modules for making rescue decisions based on the vehicle's environment, location, and human resources available; a front smart camera for remote viewing inside of the motor vehicle and utilized as a cognitive eye for ai modules and for analysis, remote viewing of the internal environment, constructed to said GPS/Bluetooth enabled wireless vehicle data recorder system; a rear smart camera, for rear camera remote viewing outside of the motor vehicle and utilized as a cognitive eye for ai analysis of the external environment of a motor vehicle; a sim card for cellular interface, providing a means for allowance of cellular chips for connecting to a cellular network for transmission and exchange of data to the artificial intelligence system; a cyborg robot module, for independent artificial intelligence and interactive communication with remote ai super-computers, first responders, social media networks, and public emergency broadcast systems; a satellite interface antenna, for interfacing and connecting to satellite networks for providing wireless connectivity to the wireless vehicle data recorder system; a first responder network, for providing a local, national, and international network of human first responders for addressing emergencies received by the artificial intelligence system; a social media networks, for establishing interactive communications to social networks with for interacting with users connected to international social networks for assistance to emergency first responders for preserving life; a public emergency broadcast system, for broadcasting hazardous incidents to public emergency broadcast systems to increase the chances of a successful rescue mission; a satellite network, for interstellar space networking of a wireless vehicle data recorder for international global communications and connectivity of said wireless vehicle data recorder, wirelessly connected to said Satellite network and; a gps satellite network, for computing the precise physical location of vehicle data recorder and location of a distressed vehicle that needs emergency services, wirelessly connected to said Cyborg NANA A.I. Robot Module, and wirelessly connected to said GPS/Bluetooth enabled wireless vehicle data recorder system; an internet connection to the backbone of the internet, for interfacing artificial intelligence to social networks, for general internet communications, voice, video, and data communications using internet protocol; a cellular network, for providing cellular network and data interconnectivity for the wireless vehicle data recorder, exchange of data from the physical environmental of a motor vehicle; a deep qa software architecture, for providing the central cognitive operating system utilized as a basis for artificial intelligence, for providing the most advanced artificial intelligence cognitive computing platform; a 3-tier artificial intelligence model, for providing the basic ai model for establishing the general knowledge base of the ai robot using transfer learning enabling machine learning simulating an emergency responder, medical doctor, and related knowledge of the emergency response industry; a smart recognition camera module system, for providing a fully trained ai capable of remote visual viewing, and determining the safety status of the physical environment of a motor vehicle for immediate decision making regarding the safety status of a motor vehicle and occupants; a window controller module, for providing a trained ai for remotely and remotely controlling windows and electronic of a motor vehicle by remote control by third party human emergency responders; a air conditioner heater controller module, for providing a trained ai module for controlling the air conditioning and heating system of a motor vehicle and for making environmental changes automatically by the said robot and human emergency response personnel; a horn blower controller module, for providing a trained ai for robotic and remote control of a motor vehicle horn for getting attention to a distressed motor vehicle; a headlight controller module, for providing an ai for controlling the headlights of a motion vehicle to draw attention to a distressed situation requiring emergency response; a broadcast controller ai module, for providing a trained ai for broadcasting emergencies to social networks, emergency first responder networks, and public broadcast systems for assisting in a rescue mission; a cyborg intervention ai module for providing a trained ai for automated machine intervention to first responders, social network users, and for providing immediate robotic human-like interactive assistance with emergency responders when a hazardous environment is detected for assisting in rescue missions; a self-checking ai module for providing a trained self-checking ai module for monitoring the status of the environment and for the ongoing well being functionality of the wireless vehicle data recorder module, internal ai software systems; a broadcast status ai module for providing a trained ai to broadcast the status of the motor vehicle's physical environment to emergency first responders, public emergency broadcast systems, and general authorized users; an interactive conversational mode controller ai for providing a fully trained ai for intercommunicating with human users, for executing voice commands necessary for a successful rescue effort and allowing users and first responders to have dialog with the ai in any language; a continuous monitor controller ai module for providing a trained ai for continuously monitoring and reporting on safety of the motor vehicle's internal and external environment, predicting failures, automatically fixing problems before they occur, and for triggering cyborg robotic control to eliminate a hazardous environment and for providing telecommunications to human operators in the event of an uncontrolled hazardous environment; a speaker for providing electroacoustic device as an audio system for hearing output messages and rescue instructions from emergency first responders in real-time; a microphone for providing an electromechanical device to transmit voice commands to the artificial intelligence system for communicating with emergency responders and rescue personnel; a solar panel system, for providing solar power management to the wireless vehicle data recorder system and independent power source for keeping internal batteries charged enabling continuous power to the wireless vehicle data recorder system; a ac/dc power port, for enabling the wireless vehicle data recorder to be powered by ac/dc electrical power to the wireless vehicle data recorder system; and a gps receiver for receiving gps coordinates that can determine physical position of the vehicle data recorder and vehicle by analyzing the gps satellite signals it receives from gps satellites.
36. A solar powered multilingual emergency response robot and interactive artificial intelligence system based on IBM's Watson cognitive system for detecting hazardous conditions within a motor vehicle for prevention of vehicle related deaths, comprising: An ai enabled wireless vehicle gps enabled data recorder system, containing ai software for capturing and transmitting vehicle environmental data for transmission to Watson for continuous data analysis of the vehicle's environment, global communications to end-users, and providing global positioning location for physical location of the vehicle in the event of an emergency, and for local storage of artificial intelligence modules; an environmental temperature sensor, for sensing and analysis of vehicle temperature and hazardous environments within a motor vehicle for transmission to Watson for vehicle analysis and follow up; a Watson based cyborg cognitive robot residing in the wireless vehicle data recorder, acting independent of Watson, for cognitive analysis of vehicle environmental data, and interactive robot interaction with Watson in making rescue decisions based on vehicle's environment, location, and human resources available for rescue missions; a front smart camera for multiple front camera views of the motor vehicle for ai viewing of a motor vehicle utilized as a cognitive eye for Watson analysis and cyborg analysis for environment sensing and remote viewing of the internal environment of a motor vehicle for enabling visual communications; a rear smart camera for rear camera multiple views of the outside of the motor vehicle utilized as a cognitive eye for Watson analysis of the external environment of a motor vehicle; a sim card cellular interface for allowance of cellular sim chips for connecting the wireless data recorder to a cellular network for transmission and exchange of data to Watson for analysis of environmental data transmitted from artificial intelligence; an ai based cyborg based on IBM Watson cognitive computing platform identified as nana ai robot module for independent artificial intelligence interactive communication with Watson, first responders, social media networks, and public emergency broadcast systems, for collection of vehicle environment data to be transmitted to Watson for cognitive analysis of the motor vehicle's environment and providing independent artificial intelligence in the event of disconnection from Watson; a satellite network interface antenna, for interconnecting the wireless vehicle data recorder to satellite communication the wireless vehicle data recorder system; a first responder network for providing a local, national, and international network of human first responders for addressing emergencies in real-time received by Watson and the Nana ai cyborg; a social media network comprised of a multiplicity of social media networks for establishing interactive communications to social networks and with Nana and Watson interacting with users connected to international social media networks; a public emergency broadcast system connected to Watson and Nane for broadcasting hazardous incidents to public emergency broadcast systems to increase the chances of a successful rescue mission; a satellite network, for interstellar space networking of the wireless vehicle data recorder, Watson and Nana for voice, data, video internet communications, and for connecting the said wireless vehicle data recorder to Watson for international networking of the wireless vehicle data recorder for real-time communications; a gps satellite network for computing the precise physical location of wireless vehicle data recorder and physical location of a distressed vehicle that needs emergency response services for locating the motor vehicle for a successful rescue mission; an internet connection via the backbone of the internet, for interfacing Watson and Nana to social networks for general internet communications, voice, video, and data communications using internet protocol; a cellular network for providing cellular network communications and data interconnectivity for the wireless vehicle data recorder to Watson and the Nana Cyborg for wireless exchange of data from the environment of a motor vehicle to Watson and Nana enabling wireless communications to Watson and Nana and allowing a sim based cellular interface; a deep qa software architecture based on Watson, for providing a central cognitive operating system utilized as a basis for the artificial intelligence system and enabling the most advanced artificial intelligence system; a 3-tier artificial intelligence model based on Watson for providing the basic ai model for establishing the general knowledge base of the Nana robot using transfer learning enabling machine learning of an emergency responder, medical doctor, and related knowledge of the emergency response industry; a smart recognition camera module, for providing a fully trained ai capable of remote visual viewing of the motor vehicle, and determining the safety status of the physical environment of the motor vehicle for ai processing by Nana and transmission to Watson for immediate ai decision making regarding the safety status of the motor vehicle and occupants; a window controller module, for providing a trained ai for remotely controlling windows of the motor vehicle by Watson and Nana and enabling remote control by third party human emergency responders for purposes of preserving life; an air conditioner heater controller module for providing a trained ai module for controlling the air conditioning and heating system of a motor vehicle and for making environmental changes automatically by Nana and Watson and remotely control by emergency response personnel; a horn blower controller module for providing a trained ai for robotic and remote control of the motor vehicle's horn system for getting attention to a distressed motor vehicle for purposes of assisting in a rescue mission; a headlight controller module for providing an ai for controlling the headlights of a motor vehicle to draw attention to a distressed situation requiring emergency response; a broadcast controller ai module for providing a trained ai for broadcasting emergencies to social networks, emergency first responder networks, and public broadcast systems; a interactive cyborg robot ai module for providing a trained ai for automated machine intervention and communications to first responders, social network users, for providing immediate robotic, human-like interactive assistance with emergency responders when a hazardous environment is detected; a broadcast controller ai Module for automated broadcast of hazardous events to public emergency networks, emergency responders network, and social media networks for increasing the probability of a successful rescue mission; a self check ai module for providing a self-checking status of the wireless vehicle data recorder and the ongoing well being and functionality of the overall ai based rescue system; a broadcast status ai for providing a trained ai to broadcast the status of a motor vehicle's physical environment to emergency first responders, public emergency broadcast systems, and general authorized users for broadcasting the motor vehicle's physical environment; an interactive conversational mode controller for providing a fully trained ai for interacting with human users and executing commands necessary for a successful rescue effort and allowing human end-users and first responders to have dialog with Watson and Nana in any language; a continuous ai monitor controller for enabling a trained ai capable of continuously monitoring and reporting on safety of the motor vehicle's internal and external environment, predicting failures, automatically fixing problems before they occur, and for triggering the Nana cyborg and Watson for robotic control to eliminate a hazardous environment and for providing telecommunications to human operators in the event of an hazardous event; a speaker for enabling a electro acoustic device and audio system for hearing output messages and rescue instructions from Watson, Nana and emergency first responders; a microphone for enabling an electromechanical device for transmission of voice commands to Watson and Nana; a solar panel system for providing solar power management to the wireless vehicle data recorder system and for enabling an independent power source for keeping internal batteries charge and providing continuous power to the wireless vehicle data recorder for uninterrupted power; an ac/dc power port, for providing a means for the wireless vehicle data recorder to be powered by ac/dc electrical power for enabling other methods of power to the ai based wireless vehicle data recorder; a gps receiver for providing a receiver that is capable of determining physical position of the wireless vehicle data recorder and for analyzing and computing the gps coordinates it receives from gps satellites.
37. A method of automatically securing first responder emergency assistance in critical life-threatening situations in vehicles and internal enclosures using artificial intelligence and global communications, the method comprising the steps: a) construct a wireless ai hardware apparatus having human-like qualities, endowed with continuous collection of environmental data, interactive communications, monitoring of environmental data, GPS capabilities, machine learning, artificial intelligence, multilingual capabilities, global telecommunications, enabling artificial intelligence capable of sensing dangerous environments, detecting, repairing overheated, over-cooling, carbon monoxide infested environments and automatically detecting problems in environmentally unsafe spaces, unsafe automobiles, and areas uninhabitable and fatal to humans, b) connecting the said wireless ai hardware apparatus to wireless networks and emergency response networks to a global wireless satellite network for automatic intercommunication, data communications, voice communications, and continuous environment monitoring between the said wireless ai hardware apparatus and emergency response networks by training the ai with information, procedures, contact information about emergency response network operators, and, c) enable interactive robotic monitoring of communications between the wireless ai hardware apparatus and emergency responders in the event a dangerous, unsafe environments are triggered by artificial intelligence, and, d) activate interactive robotic communications between the wireless ai hardware apparatus and human emergency responders to dispatch assistance to dangerous and unsafe environments when triggered by artificial intelligence or human operators.
38. a gps enabled virtual robot capable of real time monitoring, dispatch, and extracting and processing environmental data by said virtual robot from the internal environment of a motor vehicle, analyzing said data for any hazardous conditions, capable of interacting with artificial intelligence, other humans, and emergency response professionals for transmission and analysis of critical environment data for preservation of life, comprising, a cognitive computing platform based on artificial intelligence system for continuously monitoring environmental conditions of a motor vehicle and internal environment, a GPS satellite network for receiving real-time gps data of the vehicle to determine its location, and, a GPS receiver for determining the physical location of the virtual robot, and, a satellite network for global data communications and interconnecting said virtual robot to emergency response professionals, and, a social media network ai for broadcasting critical events, and status to social networks for assistance by the public.
39. An Artificial Intelligence based wireless vehicle monitoring apparatus and network for a land vehicle interconnected to a cognitive computer, a gps satellite tracking network, a virtual robot, environment data recording system, and satellite network, comprising: a cognitive computing system for receiving atmospheric data, dangerous conditions, and statistical analysis of data within the said vehicle data recorder system; a virtual robot capable of artificial intelligence and for interfacing environment data from the vehicle monitoring system to Watson for data analysis and follow up, a satellite network and interface for connecting said vehicle data recorder system to the internet and said satellite network, and, a remote data center for remote storage and retrieval of the critical data captured by the vehicle data recorder, and, a smart camera system for remote viewing of the vehicle and for transmission to said virtual robot determining hazardous situations, and, an emergency response subsystem for automated forecasting, broadcasting, predicting, and alerting emergency response teams and users of a dangerous environment actually occur for the preservation of life and prevention of a vehicle fatalities.
40. A portable ai based wireless black box for a motor vehicle environment capable of physically attaching to a motor vehicle's dashboard, capable of capturing environmental data from said motor vehicle alerting humans of danger events endowed with artificial intelligence system for recording, predicting, and monitoring the temperature and environment, and initiating automated emergency assistance in the event of hazardous circumstances and threats to human lives comprising, (a) an artificial intelligence system for predicting, capturing, monitoring, and analyzing data captured from said motor vehicle environment for real-time testing of a hazardous environment, (b) environment sensors for analyzing the vehicle's environment and transmitting information to the artificial intelligence system for processing of the said hazardous environment, (c) a smart camera system for interpreting the environment using artificial intelligence and for broadcasting information to said artificial intelligence system and first responders, for follow up with automated emergency response action, (d) an automated public communications system for automatically communicating GPS and other valuable information about hazardous events to emergency response professionals, (e) a plurality of social networks for broadcasting dangerous events and GPS location information to family, friends, and third parties, to assist in rescue operations, (f) a machine learning module which allows the machine to learn from previous interactions with the data and environment which passes through the system, (g) a trained ai with capabilities of interfacing with and connecting to a motor vehicle's electronic system for purposes of adjusting the environment by controlling electronic devices within said motor vehicle.
41. A method for deploying an automated global emergency response system for preservation of life, using artificial intelligence over a wireless network for automatically dispatching emergency assistance to any physical location in the world when any hazardous environment is detected, the method comprising the steps of: (a) constructing a gps enabled ai based hardware apparatus with ai capabilities for automatically detecting hazardous environments, and capable of dispatching emergency response assistance, and communicating with human emergency personnel in a human-like fashion in any language, and, (b) connecting said ai based hardware apparatus to emergency response networks, wherein a wireless communications network is established for global wireless communications, and wherein a gps satellite network for providing physical location of the global emergency response system for immediately dispatching emergency response personnel when a hazardous event is triggered to a specific gps computed location, and, (c) establishing continuous monitoring of any internal environment and automatically with emergency response personnel and dispatching emergency assistance to a specific location when a danger and hazardous environment is detected by the virtual robot.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF SPECIFIC EMBODIMENTS
[0127] The basic steps of establishing the invention is relatively easy to one skilled in the art and employs eight (8) basic steps which can be implemented as defined below.
[0128] 1. Establish the tri-level Artificial Intelligence environment using IBM's 3 Level AI MODEL used for the construction of the NANA ai cyborg in the implementation for continuous monitoring as this environment establish how the AI cyborg will operate and the AI model must be endowed with the capabilities of a medical and emergency professional.
[0129] 2. Establish the NANA AI cyborg hardware with wireless sensors and smart cameras and microphone for collecting data from the vehicle's environment to be sent to WATSON for real time processing.
[0130] 3. Establish the telecom devices for the vehicle which will allow the invention to intercommunicate with WATSON over a cellular and/or satellite network for global connectivity.
[0131] 4. Establish a remote data center within Watson for long term storage of remote data which will be used by the vehicle's wireless data recorder system to hold the history of environmental data for later analysis.
[0132] 5. Train the cyborg on how to interface with Watson enabled with remote environmental sensors, a remote data center, and data collection processor for the continual processing of data received from a vehicle to WATSON for intelligent analysis of the environment for deciding what action should be taken to effectuate an Emergency response.
[0133] 6. Establish the camera system with internal microphones to interface with WATSON's ai recognition system which will be used by NANA and WATSON as a pair of eyes and ears for detecting dangerous environments using visual analysis.
[0134] 7. Establish a global wireless network using satellite communications network and cellular network which will be used as a basis for international wireless transmissions to connect WATSON to the vehicle data recorder system, whereas this network is also used by NANA & WATSON for voice communications in the assistance of an emergency.
[0135] 8. Connect the system to Emergency Response networks and social media networks for communication with humans.
Training the Nana Cyborg to Interface with Watson
[0136] In this implementation there is NO PROGRAMMING such as with normal processes of digital programmable computer systems of the present day.
[0137] This is a cognitive application, requiring no actual programming but based upon advanced AI Techniques of IBM's WATSON cognitive capabilities, including TRANSFER LEARNING to speed development of the AI and the overall solution. The NANA virtual robot/cyborg is based upon this concept of TRANSFER LEARNING, where it is able to receive the knowledge from the WATSON cognitive system via wireless communication links.
[0138] The NANA cyborg takes on the same characteristic as tri-level Artificial Intelligence environment using IBM's 3 Level AI MODEL described, and must be trained to collect data from the vehicle's environment, and transmit this data to WATSON for analysis.
[0139] NANA is an AI system that continuously learns and in the event of a disconnection on the network, it must be trained to operate and make decision, make telephone calls, and perform other tasks independently of WATSON, having the same capabilities as WATSON with the powers to reach out to social media and other human EMERGENCY RESPONSE NETWORKS.
[0140] A mass memory, smart camera, artificial intelligence, and wireless capabilities should be constructed into physical housing design of the CYBORG computing platform for implementation of the monitoring ROBOT must be developed. This is a simple wireless device as shown in
[0141] This multi-functional wireless device which will serve as the artificial intelligence machine to gather information within the vehicle and remotely send to WATSON in real time for processing of the environment. This device is actually trained to interact with WATSON and human operators will get smarter and smarter with time as the result of its interaction with humans and the data it processes.
[0142] The mass memory is used to house the artificial intelligence system, and other data necessary to maintain the safety of the vehicle.
[0143] The cyborg AI and its sensor systems must be specifically configured to recognize the following: [0144] (a) children [0145] (b) pets [0146] (c) adults, elderly persons, and, [0147] (d) dangerous environments such as overheating, overcooling, dangerous gaseous states such carbon monoxide, fires, and, [0148] (e) other humans seeking to assist in the process of responding to an emergency, [0149] (f) any dangerous condition including any inappropriate human conditions occurring within the vehicle that may be hazardous to the environment for children, humans, and pets.
The Eyes and Ears of Nana and WatsonSmart Cameras
[0150] The cyborg is equipped with a pair of eyes and ears with the use of smart cameras and microphones built in to the design of the system. The cameras which are built in to the device are capable of transmitting visual information to WATSON for processing.
[0151] These images are used by WATSON and NANA to determine the status of the vehicle. In other words, these images and real time video captures are used by the cognitive system to analyze the status of the vehicle's environment in much the same way a human evaluates the same environment.
[0152] WATSON's cognitive capabilities when applied to video and sounds can be interpreted like a human for possible follow up when action is needed.
The Earsthe Microphone
[0153] The microphone of the device serves as the ears for listening to or broadcasting sounds to WATSON. Sound captured from a microphone can in much the same way as video be used to interpret the status of an environment and the people in it.
Review of the Main Drawings & Parts
[0154] There are various parts to the invention described on under BRIEF DESCRIPTION OF THE DRAWINGS section. The basic parts are numbered from 10 to 220 and form the basis of the invention. The descriptions therein are known to one skilled in the art and describes the function of each part.
[0155] Parts 10-22 are the main parts composed of the IBM SUPER COMPUTER HARDWARE and IBM's Deep QA Software Architecture respectively. The core artificial intelligence is stored here and this invention is based upon and possess all the characteristic of the super computing environment and the sub-systems rely upon this mainframe for high speed data processing of the environment of a vehicle.
[0156] Part 30 is the NANA ai cyborg virtual robot which is used in the implementation for monitoring of the vehicle, and it interconnects to WATSON in its normal operation. This virtual robot is an independent system and wireless device that can function on its on and make independent decisions of WATSON. This AI device is also capable of continuous learning about the environment and methods used to keep the environment safe. Staying connected to WATSON in real time allows the CYBORG to automatically learn new features from WATSON and its interactions with human end users.
[0157] Part 40 is the Vehicle Data Recorder which can be a part of the cyborg of part 30. This device or process is used for storing critical vehicle data in memory and is capable of connecting to both cellular and Satellite Networks in order to maintain communications between WATSON, the CYBORG, and the vehicle's environment.
[0158] Part 50 is the public emergency broadcast system which is used broadcast dangerous event. This is a networking system and any person skilled in the art understands that this configuration is required in order to deploy continuous communications to WATSON and the telecommunications network.
[0159] Part 70 is internet that can be used in the implementation for connecting to social media and other networks for assistance in the rescue process.
[0160] This process is part of the AI of the CYBORG because there is a need to collect information and transfer it to a source for processing. This process or program is a basically a software and ai module that can be a part of the normal processing of the invention.
[0161] It is how data travels across the network from the vehicle to WATSON and processed for wellness of the vehicle's internal environment.
Wireless Network/Internet Services
[0162] The establishment of the wireless network is necessary for communication between the internet, remote cyborg device and the WATSON cognitive environment.
[0163] This can be done by using a standard cellular network and/or Satellite network as shown in
[0164] By establishing Satellite network connectivity to the device, then remote service of locating a troubled vehicle would be available anywhere in the world where the vehicle's GPS is known. This information is used by the CYBORG and WATSON to broadcast to EMERGENCY SUPPORT PERSONNEL and SOCIAL MEDIA with the precise location of the vehicle in distress. There is also a requirement to get the data from the vehicle to WATSON and this network is used for that purpose.
Precise GPS Network Technology
[0165] The design must be endowed with the precise GPS technology for computing the precise location of a potential emergency. The GPS information is used by the Cyborg and WATSON and the cyborg to determine the location of the vehicle for dispatch purposes.
Interactive Human Like Telephone Calls
[0166] Based on this design, the cyborg must be capable of placing multiple phone calls, and interacting with emergency service personnel that can assist in an emergency at the precise location. The ability to make multiple interactive phone calls to multiple recipients increases the chances of rescue. Interactive text messaging, social media messaging and broadcast are also basic communications the cyborg is capable of performing. Any communications skill normally used by a human is also available to the Watson and cyborg and can be automatically performed at the discretion of the cyborg or Watson.
First Responder/Social Media Networking/Public Broadcast Systems
[0167] This Artificial Intelligence system can communicate with First Responders, Social Medial Network, and Public Broadcast system in real-time in order to assist with a rescue. By communicating with First Responders, speedy help can be dispatch to the physical site of the rescue using precise GPS Technology.
[0168] Similar to a real human, WATSON can have multiple communications with human operator, 911 operators, in order to effect assistance to a troubled rescue site.
[0169] Social media is known and proven to be an excellent way to broadcast news and discover new important events and information.
[0170] Accordingly, this Cyborg must be connected to every known social media network to assist in a rescue. Broadcasting to Social Media allows the artificial intelligence system to connect to social media networks and communicate with social media users including potential friends and family of victims who may be able to assist in the rescue.
[0171] The probability of a successful rescue will increase when more people are aware of dangerous events in real time. WATSON, and NANA has the intrinsic ability to communicate with many individuals at one time, including texting, instant messaging, talking, and even video conferencing. A direct feed of an harzardous event can be broadcasted in real-time to social media and other public networks for immediate assistance in rescue missions.
Solar Charging to Guarantee Uptime
[0172] Solar charging to the vehicle's data recorder remote unit is necessary to guarantee uptime and service to the vehicle. This artificial intelligence apparatus will be powered by the vehicle's battery and it's own internal rechargeable batteries. However, the device will contain a small solar charging panel to continuously charge the internal batteries in the event the vehicle's battery source fails. Solar charging and ac/dc power will guarantee power to the system for proper ongoing operations with 99.9% uptime.
Other Important Guidelines to Follow in Building the Invention
[0173] To further clarify other important guidelines in building the invention. The following basic steps may be followed whereas one skilled in the art and knowledgeable of IBM Watson's cognitive environment would easily identify and recognize the basic steps as follows: [0174] A. The telecommunications infrastructure, satellite, or cellular must be established in order to connect the IBM WATSON cognitive system to the vehicle's wireless data recorder system. [0175] B. The Wireless Data Recorder unit must be endowed with cellular. satellite, and internet capabilities in order to enable interactive communications to the IBM WATSON mainframe and telecommunications network. [0176] C. The AI of the implementation should be established with a knowledge base of the Emergency Rescue Industry and be given access to all remote channels of communication that a human would have access to in an emergency situation. [0177] D. The A-I must be established with conversation mode in order to hold conversations in real time with human operators to assist in rescues. [0178] E. IBM's Tri-level architecture should be used when building the Ai in order to keep each system unique, highly secured, and data specific for each deployment of the system. [0179] F. The remote AI of the cyborg will be constantly allowed to learn from its interactions with WATSON and humans, and the current and past data environment such that it can independently learn and make decisions as to the safety of the vehicle's environment independent of WATSON.