Abstract: An artificially intelligent air traffic control system is provided. The system can include an artificially intelligent (AI) sensor configured to detect and remotely communicate with one or more flying vehicles and an AI local server communicatively coupled to the AI sensor. The artificially intelligent local server can send control instructions including authorization for the one or more flying vehicles to fly in an airspace and a flight path to fly through the airspace. The system can also include an AI cloud server communicatively coupled to the AI local server. The AI cloud server can receive data from the AI local server and the AI sensor associated with the one or more flying vehicles. The AI local server can send the authorization and the flight path to the one or more flying vehicles via the AI sensor based on the received data stored on the AI cloud server.
Abstract: An artificially intelligent air traffic control system is provided. The system can include an artificially intelligent (AI) sensor configured to detect and remotely communicate with one or more flying vehicles and an AI local server communicatively coupled to the AI sensor. The artificially intelligent local server can send control instructions including authorization for the one or more flying vehicles to fly in an airspace and a flight path to fly through the airspace. The system can also include an AI cloud server communicatively coupled to the AI local server. The AI cloud server can receive data from the AI local server and the AI sensor associated with the one or more flying vehicles. The AI local server can send the authorization and the flight path to the one or more flying vehicles via the AI sensor based on the received data stored on the AI cloud server.
Abstract: An unmanned aerial vehicle defense system may include a sensor network having a plurality of radio receivers that are operable to detect a radio signal broadcast by the unmanned aerial vehicle. A control system operatively associated with the sensor network includes a processing system to identify the unmanned aerial vehicle detected by the sensor system. The control system also includes a countermeasures system that develops a countermeasure based on the identity of the unmanned aerial vehicle. A transmitter system operatively associated with the control system transmits the developed countermeasure to the unmanned aerial vehicle. The unmanned aerial vehicle subsequently operates in accordance with the developed countermeasure.