Patent classifications
A01M29/16
DEVICES AND METHODS FOR DISPERSING INSECTS
Devices and methods for disrupting flying insect activity of one or more flying insects within a zone are provided. One or more first acoustic signals from a first acoustic source are emitted, thereby causing the one or more flying insects to depart the zone. Each respective acoustic signal in the one or more first acoustic signals comprises a corresponding smooth periodic oscillation from the first acoustic source. Each corresponding smooth periodic oscillation independently has a frequency between 250 Hz and 1500 Hz.
DEVICES AND METHODS FOR DISPERSING INSECTS
Devices and methods for disrupting flying insect activity of one or more flying insects within a zone are provided. One or more first acoustic signals from a first acoustic source are emitted, thereby causing the one or more flying insects to depart the zone. Each respective acoustic signal in the one or more first acoustic signals comprises a corresponding smooth periodic oscillation from the first acoustic source. Each corresponding smooth periodic oscillation independently has a frequency between 250 Hz and 1500 Hz.
Landing pad for unmanned aerial vehicle delivery
A landing pad receives and stores packages delivered from an aerial vehicle are awaiting pickup from an aerial vehicle. The landing pad can be placed outside of a window and can contain a transmitter for sending out an identification signal via radio frequency to aid aerial vehicles in finding the landing pad. The landing pad contains a landing platform with a trapdoor that leads to a storage compartment. The trapdoor can be configured to only open when it receives a signal from an authorized aerial vehicle. The storage compartment can be accessed via a storage compartment door which can contain a locking mechanism. The storage compartment can be climate controlled. The landing pad can also have a transmitter that emits sounds to discourage animals from nesting on or near the landing pad. The landing pad can also include a solar power generator as a source of electrical energy.
Landing pad for unmanned aerial vehicle delivery
A landing pad receives and stores packages delivered from an aerial vehicle are awaiting pickup from an aerial vehicle. The landing pad can be placed outside of a window and can contain a transmitter for sending out an identification signal via radio frequency to aid aerial vehicles in finding the landing pad. The landing pad contains a landing platform with a trapdoor that leads to a storage compartment. The trapdoor can be configured to only open when it receives a signal from an authorized aerial vehicle. The storage compartment can be accessed via a storage compartment door which can contain a locking mechanism. The storage compartment can be climate controlled. The landing pad can also have a transmitter that emits sounds to discourage animals from nesting on or near the landing pad. The landing pad can also include a solar power generator as a source of electrical energy.
Bird or Bat Detection and Identification for Wind Turbine Risk Mitigation
An automated system for mitigating risk from a wind turbine includes a plurality of optical imaging sensors. A controller receives and analyzes images from the optical imaging sensors to automatically send a signal to curtail operation of the wind turbine to a predetermined risk mitigating level when the controller determines from images received from the optical imaging sensors that an airborne animal is at risk from the wind turbine.
Bird or Bat Detection and Identification for Wind Turbine Risk Mitigation
An automated system for mitigating risk from a wind turbine includes a plurality of optical imaging sensors. A controller receives and analyzes images from the optical imaging sensors to automatically send a signal to curtail operation of the wind turbine to a predetermined risk mitigating level when the controller determines from images received from the optical imaging sensors that an airborne animal is at risk from the wind turbine.
Avian detection system
An avian detection system for determining risks of collision between a collision object and bird objects includes avian radar system(s) providing a first type of information data relating to objects detected, and a transponder receiver receiving transponder data transmitted or broadcasted by transponders provided at the collision objects. Processors are configured to receive first type of information data corresponding to the detected objects and provide radar plots. The processors are further configured to receive the transponder data and provide transponder plots, to create and store a number of object tracks based on the provided radar plots and transponder plots, with each track holding object data corresponding to or determined from data of matching plots, and to determine one or more risks of collision or collision risk levels for the collision object based on object data of a plurality of the obtained object tracks.
Avian detection system
An avian detection system for determining risks of collision between a collision object and bird objects includes avian radar system(s) providing a first type of information data relating to objects detected, and a transponder receiver receiving transponder data transmitted or broadcasted by transponders provided at the collision objects. Processors are configured to receive first type of information data corresponding to the detected objects and provide radar plots. The processors are further configured to receive the transponder data and provide transponder plots, to create and store a number of object tracks based on the provided radar plots and transponder plots, with each track holding object data corresponding to or determined from data of matching plots, and to determine one or more risks of collision or collision risk levels for the collision object based on object data of a plurality of the obtained object tracks.
Systems and methods for detecting flying animals
A system for detecting flying animals, the system comprising: a detection module configured to detect flying animals; a local processing module associated with the detection module and configured to remove background noise from data gathered by the detection module; an analysis module configured to receive data from the local processing module and process said data to determine presence of flying animals and classify such flying animals by species; and a deterrent configured to repel one or more species of flying animal based on the classification of detected flying animals.
Weighted Rotatable Electronic Owl
An electronic owl for scaring away pigeons and other unwanted wildlife from homes or other buildings. The electronic owl includes a housing having a body and a rotating head attached thereto. The body of the rotating electronic owl is attached to a weighted base which allows a user to add or subtract the amount and type of material put into the base. The housing includes a variety of motion sensors therein configured to detect birds or other unwanted animals. The electronic owl utilizes motion, lights, and sound to scare away pest animals from the designated area.