F41G9/002

DRONE INTERCEPTOR SYSTEM, AND METHODS AND COMPUTER PROGRAM PRODUCTS USEFUL IN CONJUNCTION THEREWITH
20190285388 · 2019-09-19 ·

A system operative to down a target drone having propellers deployed along a perimeter p, comprising a processor-controlled interceptor drone bearing a processor-controlled flexible elongate intercepting agent cannon and an onboard camera; and an onboard processor to receive sensed wind conditions and to a firing distance d, between interceptor and target drones, given a firing angle A, and wherein the processor is configured to track the target drone using imagery generated by the onboard camera including at least once, when said wind conditions exist, guiding the interceptor drone to a firing position whose distance from the target drone is d, and commanding the cannon to fire at firing angle A, once said firing position is achieved, thereby to use the flexible elongate intercepting agent to down target drones.

DATA PROCESSING
20190285385 · 2019-09-19 ·

A data processing method and apparatus, the method comprising: storing, at a first memory location in a memory, a first copy of a set of data; storing, at a second memory location in a memory, a second copy of a set of data; comparing the first copy to the second copy so as to identify, within the first copy, a pointer, the pointer being located at a first data element of the first copy, the pointer specifying a second data element of the first copy; determining an offset for the identified pointer, the offset specifying a number of data elements between the first data element and the second data element; and modifying the first copy such that the pointer within the first copy specifies the second data element using only the first data element and the offset.

Multimode unmanned aerial vehicle
12013212 · 2024-06-18 · ·

A system comprising an unmanned aerial vehicle (UAV) configured to transition from a terminal homing mode to a target search mode, responsive to an uplink signal and/or an autonomous determination of scene change.

METHOD AND SYSTEM FOR MANAGING AN AIR COMBAT MISSION ON A BATTLESPACE

The subject matter described herein includes a system and method for managing an air combat mission on a battlespace for one or more aircraft. The one or more aircraft receive a battle plan for the combat mission. The battle plan is then broken down into different mission plans for each aircraft. The mission plan includes tasks to be completed by each aircraft and a route for each aircraft to take during the mission. If the battlespace changes during the mission, the system is configured to update the mission plans for appropriate ones of the aircraft to address the change to the battlespace so that the mission continues towards completion. The system further includes the ability to create and evaluate alternative courses of action prior to selection as the primary or currently executing plan.

SYSTEM INTEGRATION
20190154402 · 2019-05-23 · ·

A method and apparatus for generating, in an aircraft in flight, a feasibility display indicative of the feasibility of a weapon, the method comprising: providing a performance envelope for the weapon; determining, using the performance envelope, configuration data for configuring a generic algorithm; uploading the configuration data to the aircraft; generating feasibility data N indicative of the feasibility of a weapon carried on the aircraft successfully engaging a target and/or the feasibility of a weapon carried on the target successfully engaging the aircraft; determining, on board the aircraft, using the same generic algorithm and the uploaded configuration data, one or more test criteria; performing, on board the aircraft, an assessment process including determining whether or not the feasibility data satisfies the one or more test criteria; and, based the assessment, using the feasibility data, generating the feasibility display.

UNMANNED AERIAL VEHICLE
20190077503 · 2019-03-14 ·

An unmanned aerial vehicle (UAV) adapted for transit in and deployment from a projectile casing is provided. The UAV includes a wing assembly coupled to the projectile casing and the wing assembly moveable between a closed position and a deployed position. The UAV further includes a propulsion system including at least one rotor disposed on the wing assembly to generate lift, wherein in the closed position, the wing assembly is substantially integral with the projectile casing and in the deployed position, the wing assembly is extended outwards from the projectile casing.

Multimode unmanned aerial vehicle
10222177 · 2019-03-05 · ·

A system comprising an unmanned aerial vehicle (UAV) configured to transition from a terminal homing mode to a target search mode, responsive to an uplink signal and/or an autonomous determination of scene change.

METHODS AND APPARATUS FOR POINTING LOGIC IN AIRCRAFT
20240271911 · 2024-08-15 ·

Methods and apparatus for pointing logic in aircraft are disclosed. A disclosed example apparatus to aim an aiming device carried by an aircraft includes at least one memory, machine readable instructions, and processor circuitry. The processor is to at least one of instantiate or execute the machine readable instructions to determine a position of a target, determine an orientation of the aircraft, determine aiming points based on the orientation and a movement range of the aiming device, and determine a movement of at least one of the aircraft or the aiming device based on the aiming points and the position to orient the aiming device toward the target.

SYSTEM AND METHOD FOR INTERCEPTION AND COUNTERING UNMANNED AERIAL VEHICLES (UAVS)
20180335779 · 2018-11-22 ·

Systems, devices, and methods for identifying a target aerial vehicle, deploying an interceptor aerial vehicle comprising at least one effector, maneuvering the interceptor aerial vehicle to a position to engage a target aerial vehicle, deploying the at least one effector to intercept the target aerial vehicle, and confirming that the target aerial vehicle has been intercepted.

Sighting and launching system configured with smart munitions

A sighting and launching weapons system that incorporates the technologies of smart munitions and virtual reality (VR) simulation with precise target engagement capabilities; including targets that would normally be hidden from the shooter's field of view. Non-linear deployment of smart munitions to a precise target coordinate (via closed-loop navigation) allows for minimal collateral damage. Network link allows a plurality of operators to participate in coordinated target engagement in real time from one or more remote locations. The sighting and launching weapons system can be configured for a variety of uses including the deployment of weaponry or aid, and is capable of automatically identifying friendly targets from enemy targets.