G01S1/76

Device, system, and method for controlling the focus of a laser to induce plasmas that emit signals with high directivity

A focus controlling component is configured to control a focus of a laser beam that passes through water and induces plasmas that emit signals. The focus of the laser beam is controlled such that the signals emitted by the induced plasmas interfere to form a combined signal that propagates in a desired direction.

FPGA-BASED REAL-TIME PROCESSING SYSTEM AND METHOD APPLIED TO UNDERWATER ACOUSTIC POSITIONING AND REALIZING RECONFIGURABILITY AND MULTIPLE OUTPUT

A field-programmable gate array (FPGA)-based real-time processing system applied to underwater acoustic positioning and realizing reconfigurability and multiple output is provided. The system includes a multi-interface control and command parsing module for automatically completing sample information transmission and command parsing; a finite-state machine (FSM) of sample management for calculating related data and completing splitting, flipping and writing of a sample; a parallel correlation processor group for completing, in parallel, high-performance processing operations regarding a plurality of targets; and a multiple output data former for simultaneously realizing data formation of a multiple output result and outputting a flag bit signal to the outside. A FPGA-based real-time processing control method is also provided that is applied to underwater acoustic positioning and realizing reconfigurability and multiple output. The system and the method are used, such that during a whole realization process, under multiple array elements and multiple targets, high-speed parallel correlation processing is realized, thereby solving problems in terms of real-time performance, universality and anti-noise performance, and effectively realizing high-performance correlation.

FPGA-BASED REAL-TIME PROCESSING SYSTEM AND METHOD APPLIED TO UNDERWATER ACOUSTIC POSITIONING AND REALIZING RECONFIGURABILITY AND MULTIPLE OUTPUT

A field-programmable gate array (FPGA)-based real-time processing system applied to underwater acoustic positioning and realizing reconfigurability and multiple output is provided. The system includes a multi-interface control and command parsing module for automatically completing sample information transmission and command parsing; a finite-state machine (FSM) of sample management for calculating related data and completing splitting, flipping and writing of a sample; a parallel correlation processor group for completing, in parallel, high-performance processing operations regarding a plurality of targets; and a multiple output data former for simultaneously realizing data formation of a multiple output result and outputting a flag bit signal to the outside. A FPGA-based real-time processing control method is also provided that is applied to underwater acoustic positioning and realizing reconfigurability and multiple output. The system and the method are used, such that during a whole realization process, under multiple array elements and multiple targets, high-speed parallel correlation processing is realized, thereby solving problems in terms of real-time performance, universality and anti-noise performance, and effectively realizing high-performance correlation.

LOCATION DETERMINATION SYSTEM HAVING MESH INFRASTRUCTURE TO REDUCE POWER CONSUMPTION
20210058750 · 2021-02-25 · ·

The present disclosure relates to a location determination system that includes acoustic transmitting devices (104), location tags (112), and a wireless mesh network (106), where the wireless mesh network uses battery-powered devices. A location tag receives acoustic signals (e.g., ultrasound signals) from an acoustic transmitting device. Clocks from members of the wireless mesh network are synchronized by observation of clock pairings, each clock pair formed by respective clocks in a transmitting device that transmits a message and a receiving device that receives the message. By analyzing the observed clock pairings, a best fit between the clock pairings may be determined. After selecting a reference clock, an acoustic transmission schedule may be propagated to the respective acoustic transmitting device.

LOCATION DETERMINATION SYSTEM HAVING MESH INFRASTRUCTURE TO REDUCE POWER CONSUMPTION
20210058750 · 2021-02-25 · ·

The present disclosure relates to a location determination system that includes acoustic transmitting devices (104), location tags (112), and a wireless mesh network (106), where the wireless mesh network uses battery-powered devices. A location tag receives acoustic signals (e.g., ultrasound signals) from an acoustic transmitting device. Clocks from members of the wireless mesh network are synchronized by observation of clock pairings, each clock pair formed by respective clocks in a transmitting device that transmits a message and a receiving device that receives the message. By analyzing the observed clock pairings, a best fit between the clock pairings may be determined. After selecting a reference clock, an acoustic transmission schedule may be propagated to the respective acoustic transmitting device.

Deployable navigation beacons
10710719 · 2020-07-14 · ·

Deployable navigation beacons can be deployed from a vehicle, such as an unmanned aerial vehicle (UAV), in an event of a loss of position or orientation of the vehicle. After deployment of the navigation beacons, the vehicle may detect locations of the navigation beacon, which may define a surface that may include surface features. The vehicle may then perform control operations based on the resolved locations. For example, UAV may maneuver to land proximate to the navigation beacons after resolving locations of the navigation beacons as a continuous surface. The navigation beacons may output a visual signal (e.g., a light), a auditory signal (e.g., a sound), and/or a radio signal. In some embodiments, each navigation beacon may include a different or unique signal.

Acoustic positioning transmitter and receiver system and method

An acoustic model determination approach for a real-time locating system is disclosed. The system includes one or more transmitting devices and one or more mobile devices. The acoustic model may be determined by deriving an acoustic representation of sub-structures within the building, and then forming the acoustic model based on the acoustic representation and the location and orientation of the static acoustic transmitting device. In another embodiment, an acoustic signal is transmitted from a static acoustic transmitting device, with the reflected signals received by the same static acoustic transmitting device in a receiving mode. Based on these received acoustic signals, the acoustic model is formed based on the reflected signals and the location and orientation of the static acoustic transmitting device.

Systems and methods for locating a mobile phone in a vehicle
10637985 · 2020-04-28 · ·

In one embodiment, a system for locating a mobile phone in a vehicle is provided. The system includes one or more processors and a memory communicably coupled to the one or more processors and storing a detection module and a safety module. The detection module including instructions that when executed by the one or more processors cause the one or more processors to: determine that a mobile phone is located in a vehicle. The safety module including instructions that when executed by the one or more processors cause the one or more processors to: in response to the determination, play a sound in the vehicle; record the sound played in the vehicle; based on the recorded sound and a sound model, determine if the mobile phone is in a driver seat of the vehicle; and if it is determined that the mobile phone is in the driver seat of the vehicle, disable at least some functionality of the mobile phone.

Systems and methods for locating a mobile phone in a vehicle
10637985 · 2020-04-28 · ·

In one embodiment, a system for locating a mobile phone in a vehicle is provided. The system includes one or more processors and a memory communicably coupled to the one or more processors and storing a detection module and a safety module. The detection module including instructions that when executed by the one or more processors cause the one or more processors to: determine that a mobile phone is located in a vehicle. The safety module including instructions that when executed by the one or more processors cause the one or more processors to: in response to the determination, play a sound in the vehicle; record the sound played in the vehicle; based on the recorded sound and a sound model, determine if the mobile phone is in a driver seat of the vehicle; and if it is determined that the mobile phone is in the driver seat of the vehicle, disable at least some functionality of the mobile phone.

SYSTEM AND METHOD FOR ENABLING DETERMINATION OF A POSITION OF A RECEIVER WITHIN A SPACE

A method and system for enabling the determination of a position of a receiver within a space includes transmitting a beacon signal from each of a plurality of beacon devices located at different locations within the space. The beacon signal transmitted from each beacon device has a unique information component and may have a unique frequency pattern of multiple frequencies. Each beacon signal can be distinguishable from the beacon signals transmitted from any other of the beacon devices based on the combination of its unique information component and its unique frequency pattern. The beacon signals are received at a receiver. At the receiver, for each beacon signal of a working subset, time-delay information of the received beacon signal is determined and multilateration is applied to determine the position of the receiver based on the location of each beacon device of the working subset.