In the air combat process,confrontation position is the critical factor to determine the confrontation situation,attack effect and escape probability of UAVs.Therefore,selecting the optimal confrontation position beco...In the air combat process,confrontation position is the critical factor to determine the confrontation situation,attack effect and escape probability of UAVs.Therefore,selecting the optimal confrontation position becomes the primary goal of maneuver decision-making.By taking the position as the UAV’s maneuver strategy,this paper constructs the optimal confrontation position selecting games(OCPSGs)model.In the OCPSGs model,the payoff function of each UAV is defined by the difference between the comprehensive advantages of both sides,and the strategy space of each UAV at every step is defined by its accessible space determined by the maneuverability.Then we design the limit approximation of mixed strategy Nash equilibrium(LAMSNQ)algorithm,which provides a method to determine the optimal probability distribution of positions in the strategy space.In the simulation phase,we assume the motions on three directions are independent and the strategy space is a cuboid to simplify the model.Several simulations are performed to verify the feasibility,effectiveness and stability of the algorithm.展开更多
近距空中支援(close air support,CAS)是空中作战力量支援地/海面部队的重要作战样式。基于美军使用机载前进空中控制员(forward air controller(airborne),FAC(A))执行CAS的作战分析,总结出无人机引导有人机执行近距空中支援的军事需求...近距空中支援(close air support,CAS)是空中作战力量支援地/海面部队的重要作战样式。基于美军使用机载前进空中控制员(forward air controller(airborne),FAC(A))执行CAS的作战分析,总结出无人机引导有人机执行近距空中支援的军事需求,并就有/无人协同近距空中支援的典型作战场景、任务流程、体系节点分工展开分析,重点剖析末端协同实施阶段涉及的核心技术,基于主要体系节点通联方式和能力需求分析,给出了有/无人协同近距空中支援的工程化实施思路,为有/无人协同近距空中支援体系能力建设提供技术支撑。展开更多
基金National Key R&D Program of China(Grant No.2021YFA1000402)National Natural Science Foundation of China(Grant No.72071159)to provide fund for conducting experiments。
文摘In the air combat process,confrontation position is the critical factor to determine the confrontation situation,attack effect and escape probability of UAVs.Therefore,selecting the optimal confrontation position becomes the primary goal of maneuver decision-making.By taking the position as the UAV’s maneuver strategy,this paper constructs the optimal confrontation position selecting games(OCPSGs)model.In the OCPSGs model,the payoff function of each UAV is defined by the difference between the comprehensive advantages of both sides,and the strategy space of each UAV at every step is defined by its accessible space determined by the maneuverability.Then we design the limit approximation of mixed strategy Nash equilibrium(LAMSNQ)algorithm,which provides a method to determine the optimal probability distribution of positions in the strategy space.In the simulation phase,we assume the motions on three directions are independent and the strategy space is a cuboid to simplify the model.Several simulations are performed to verify the feasibility,effectiveness and stability of the algorithm.
文摘近距空中支援(close air support,CAS)是空中作战力量支援地/海面部队的重要作战样式。基于美军使用机载前进空中控制员(forward air controller(airborne),FAC(A))执行CAS的作战分析,总结出无人机引导有人机执行近距空中支援的军事需求,并就有/无人协同近距空中支援的典型作战场景、任务流程、体系节点分工展开分析,重点剖析末端协同实施阶段涉及的核心技术,基于主要体系节点通联方式和能力需求分析,给出了有/无人协同近距空中支援的工程化实施思路,为有/无人协同近距空中支援体系能力建设提供技术支撑。