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移动摄像下的目标跟踪,可能由于摄像机的移动和复杂背景,出现目标模型变化较大,目标相对运动速度较快,背景遮挡等问题,对算法的实时性和鲁棒性要求更高。提出了一种组合二帧差分法、均值漂移算法(Mean Shift)和卡尔曼滤波(Kalman filtering)的跟踪算法。该算法首先设计了基于加速稳健特征匹配算法(SURF)的二帧差分法消除摄像机移动的不良影响,然后由卡尔曼滤波给出目标的预测位置,并以此为中心,初始化Mean Shift算法进行目标跟踪。此方法提高了空中武器装备稳定跟踪和打击坦克等地面目标的能力,为反坦克等军事领域提供了新的改进方向。实验结果表明,在移动摄像下,该算法较几种传统的跟踪方法都具有更好的跟踪性能。 相似文献
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为了提高无人机集群协同搜索移动目标的效率,提出一种基于飞蛾信息素寻偶机制的无人机集群协同搜索方法。根据飞蛾基于信息素选择飞行方向的寻偶行为,建立信息素图风向模型和飞蛾信息素寻偶模型。考虑无人机机间避撞约束,提出从飞蛾信息素寻偶机制到无人机集群分布式协同搜索的映射,并给出具体实现流程。仿真实验结果表明了所提方法在解决单个移动目标的协同搜索问题时的有效性和稳定性;外场飞行试验表明了所提方法在实际应用中的可行性。 相似文献
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针对无人机编队执行空战任务过程中存在无人机之间以及无人机与障碍物发生碰撞的问题,提出单向网络连接结构的多无人机避障算法和基于人工势场的控制方法,同时应用于无人机编队避障控制。以三架无人机构成的正三角形编队作为控制体,同时以长机的运动轨迹作为期望路径,长机提供僚机飞行信息,僚机接受信息保持编队飞行。多无人机编队发现障碍物到避障完成的过程包括编队集结、松散队形、最终恢复集结正三角形编队。仿真实验结果表明,所提避障控制策略能够确保编队收敛于期望的队形和稳定飞行状态。 相似文献
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多旋翼无人机的自主避障是完成复杂任务的基础,避障的效果直接影响无人机执行任务的效能。针对存在外部扰动的无人机避障问题,提出了一种基于模型预测的抗扰避障制导律设计方法。通过设计干扰观测器对系统动态中的外部干扰进行了估计,并基于李雅普诺夫函数方法设计辅助制导律用于建立稳定性约束条件。结合前两者与模型预测控制,在模型预测控制优化求解中考虑无人机与障碍物的关系,根据所设计的制导律求解水平线速度与偏航角速度指令实现无人机的避障。对所提出的避障制导律进行数值〖BHDWG8,WK10YQ,DK1*2,WK1*2D〗〖XCLQX.TIF;%129%129〗听语音 聊科研与作者互动 仿真和实物飞行验证,结果表明了所提方法的有效性。 相似文献
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Tracking maneuvering target in real time autonomously and accurately in an uncertain environment is one of the challenging missions for unmanned aerial vehicles(UAVs).In this paper,aiming to address the control problem of maneuvering target tracking and obstacle avoidance,an online path planning approach for UAV is developed based on deep reinforcement learning.Through end-to-end learning powered by neural networks,the proposed approach can achieve the perception of the environment and continuous motion output control.This proposed approach includes:(1)A deep deterministic policy gradient(DDPG)-based control framework to provide learning and autonomous decision-making capa-bility for UAVs;(2)An improved method named MN-DDPG for introducing a type of mixed noises to assist UAV with exploring stochastic strategies for online optimal planning;and(3)An algorithm of task-decomposition and pre-training for efficient transfer learning to improve the generalization capability of UAV's control model built based on MN-DDPG.The experimental simulation results have verified that the proposed approach can achieve good self-adaptive adjustment of UAV's flight attitude in the tasks of maneuvering target tracking with a significant improvement in generalization capability and training efficiency of UAV tracking controller in uncertain environments. 相似文献
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《防务技术》2020,16(4):811-824
For the automatic tracking of unknown moving targets on the ground, most of the commonly used methods involve circling above the target. With such a tracking mode, there is a moving laser spot on the target, which will bring trouble for cooperative manned helicopters. In this paper, we propose a new way of tracking, where an unmanned aerial vehicle (UAV) circles on one side of the tracked target. A circular path algorithm is developed for monitoring the relative position between the UAV and the target considering the real-time range and the bearing angle. This can determine the center of the new circular path if the predicted range between the UAV and the target does not meet the monitoring requirements. A transition path algorithm is presented for planning the transition path between circular paths that constrain the turning radius of the UAV. The transition path algorithm can generate waypoints that meet the flight ability. In this paper, we analyze the entire method and detail the scope of applications. We formulate an observation angle as an evaluation index. A series of simulations and evaluation index comparisons verify the effectiveness of the proposed algorithms. 相似文献
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分布式遗传模拟退火算法的火力打击目标分配优化 总被引:2,自引:0,他引:2
根据火力打击规则,建立了多目标函数的目标分配模型,提出了分布式遗传模拟退火算法对模型进行求解。分布式遗传模拟退火算法基于经典遗传算法进行改进:将单目标串行搜索方式变成多目标分布式搜索方式,适用于多目标寻优问题求解;采用保留最优个体和轮盘赌相结合的方式进行个体选择,在交叉算子中引入模拟退火算法,使用自适应变异概率,较好地保持算法广度和深度搜索平衡。最后,通过仿真实验验证了算法的有效性和可靠性。 相似文献