Acoustic monitoring system
    1.
    发明授权

    公开(公告)号:US12124506B2

    公开(公告)日:2024-10-22

    申请号:US18299126

    申请日:2023-04-12

    Abstract: A monitored space is monitored including the production of a first audio signal from received acoustic energy. The first audio signal is then processed against a whitelist of acoustic profiles and, based on lack of substantial correspondence with any of the acoustic profiles, a drone is navigated toward an apparent position of an apparent source. While in-flight, additional acoustic energy is received and a second audio signal is produced from the additional acoustic energy. The second audio signal is processed against the whitelist and, based on lack of substantial correspondence with any of the acoustic profiles of the whitelist, an investigate mode of the drone is initiated. The investigate mode includes notifying a remote monitor and supplying the remote monitor with an audiovisual feed. Responsive to a characterization by the remote monitor, an entry of the whitelist may be updated, added or replaced.

    UNIFIED RADIO SOLUTION
    2.
    发明公开

    公开(公告)号:US20240267114A1

    公开(公告)日:2024-08-08

    申请号:US18594427

    申请日:2024-03-04

    CPC classification number: H04B7/18504 H04B7/18506

    Abstract: A unified radio system for providing wireless communication to a communication device on an aircraft regardless of aircraft altitude may include a terrestrial network including a plurality of terrestrial base stations configured to communicate primarily in a ground communication layer below a first altitude, an ATG network including a plurality of ATG base stations configured to communicate primarily in an ATG communication layer above a second altitude, an air-to-air mesh network for data relays through connected aircraft, and an aircraft with an onboard antenna assembly and a unified radio. The unified radio may be configured to monitor network parameters of the terrestrial network and the ATG network and switch between a currently serving network and a non-serving network based on the network parameters.

    DNARNA Avionics Modeled On Biomimetics
    4.
    发明公开

    公开(公告)号:US20240250749A1

    公开(公告)日:2024-07-25

    申请号:US18100702

    申请日:2023-01-24

    CPC classification number: H04B7/18504 B64C39/02 H04B7/18506

    Abstract: The device is a DNARNAAvionics (DRAC) ClamSat platform modeled on Biomimetic, Object Oriented (OO) and Internet of Things (IOT) structures. This platform is for controlling the operational aspects of a nano Satellite termed a ClamSat.
    A ClamSat bi-valve shell uses nano hardware and OO software structures to process solar energy in a biomimetic system characterized by energy storage means. It is operationally managed by OO programs in a DNA/RNA messaging format. The Object-oriented programming (OOP) is a method of structuring a program by grouping related property-es and behaviors into individual objects. The ClamSat OO programs are structured in a class, object, and attribute model of OO DNA/RNA strands within modules will provide interfaces within and across components and subsystems and allow for adaptability and reusability over time. The device communicates wirelessly with a Command-and-Control host infrastructure.
    The DNA/RNA strand will have Internet of Things (IOT) touchpoints to provide information back to the ClamSat system for Command, Control and Data Handling within the platform.

    METHOD AND SYSTEM TO SUPPORT TWO INDEPENDENT DATALINK END SYSTEMS OF SAME TYPE

    公开(公告)号:US20240243805A1

    公开(公告)日:2024-07-18

    申请号:US18179640

    申请日:2023-03-07

    CPC classification number: H04B7/18506 H04L69/08

    Abstract: A method comprises providing first and second end systems sharing the same A619 origin and destination codes, wherein the first end system has a first A618 label/sublabel, and the second end system has a second A618 label/sublabel different from the first label/sublabel. When an uplink message is an A618 uplink with the first label/sublabel, the method sends an A619 uplink with A619 destination code via a first end system port. If an uplink message is an A618 uplink with the second label/sublabel, the method sends an A619 uplink with A619 destination code via a second end system port. When downlink message is received with the A619 origin code on the first end system port, the method sends an A618 downlink with the first label/sublabel. If downlink message is received with the A619 origin code on the second end system port, the method sends an A618 downlink with the second label/sublabel.

    Systems and methods for remote pilot communication via ground-based communication gateway device(s)

    公开(公告)号:US12040879B2

    公开(公告)日:2024-07-16

    申请号:US17563496

    申请日:2021-12-28

    Inventor: Li Ji Zhong Chen

    Abstract: Disclosed are methods, systems, and computer-readable medium for facilitating remote user airspace communication. For instance, the method may include: connecting with a user device associated with and remote from a first vehicle in a shared air traffic control sector; receiving voice communication data from at least one of the user device, a second vehicle in the shared air traffic control sector, and an air traffic control station in the shared air traffic control sector; generating analog data or digital data based on the received voice communication data; determining a recipient for the generated analog data or generated digital data in the shared air traffic control sector; transmitting the generated analog data or generated digital data to the recipient; and terminating the connection with the user device as the first vehicle leaves the shared air traffic control sector.

    Method for exchanging data between drones of a drone swarm

    公开(公告)号:US12009902B2

    公开(公告)日:2024-06-11

    申请号:US17294838

    申请日:2019-11-22

    Applicant: THALES

    CPC classification number: H04B7/18506 H04L67/12 H04W64/00

    Abstract: The present invention relates to a method for exchanging data between drones of a drone swarm comprising at least four drones, the method comprising:



    emitting, by each drone, a signal comprising data to be emitted comprising the identifier of the drone, the direction and the identifier of each signal received at the preceding moment by the drone,
    receiving, by a drone, called receiver drone, the signal emitted by another drone of the swarm,
    determining, by the receiver drone, the direction of each received signal, and
    determining, by the receiver drone, for each received signal, the relative position of the drone corresponding to the identifier of the received signal.

    Dynamic test bench for aircraft system testing

    公开(公告)号:US12009881B2

    公开(公告)日:2024-06-11

    申请号:US17923097

    申请日:2021-04-30

    CPC classification number: H04B17/3912 H04B7/18506

    Abstract: An air to ground (ATG) communication system testing platform may be configured to operably couple a base station to an aircraft base radio in a lab environment. The testing platform may include a position simulator and a channel simulator. The position simulator may be configured to generate simulated aircraft position information and communicate the simulated aircraft position information to an aircraft base radio and a base band unit of the base station. The channel simulator may operably couple a remote radio head of the base station to the aircraft base radio, and may be configured to emulate channel conditions with respect to transmission of signaling generated by the remote radio head for communication to the aircraft base radio based on the emulated channel conditions.

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