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Distributed efficiency-based circular formation for the unmanned air vehicles detection system

机译:分布式基于效率的无人飞行器探测系统的圆形编队

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摘要

This paper considers on the general circumnavigation problem for a team of vertical takeoff and landing unmanned air vehicles, with the goal of achieving specific circular formations and circling centered at a target of interest. Different from the traditional circular formation problem, in this paper, not only the formation but also the detection efficiency of the formation is taken into consideration. A novel distributed optimal circular formation algorithm is proposed. According to this algorithm, the circular formation can be guaranteed with the optimal radius that can optimize the team performance function. Hereon, the performance functions can be time-varying, and thus a time-varying optimal circular formation is created. Theoretical studies indicate that the proposed algorithm can achieve the formation in a distributed manner only based on the local information and the network connection. Finally, simulation examples are presented to show the validity of the theoretical results.
机译:本文考虑了一组垂直起降无人飞行器的一般绕行问题,目的是实现特定的圆形编队并以感兴趣的目标为中心进行绕行。与传统的圆形地层问题不同,本文不仅考虑地层,而且考虑了地层的探测效率。提出了一种新的分布式最优圆形成算法。根据该算法,可以以最佳半径保证圆形形成,从而可以优化团队绩效函数。在此,性能函数可以是随时间变化的,因此可以创建随时间变化的最佳圆形结构。理论研究表明,所提出的算法仅基于本地信息和网络连接才能以分布式的方式实现。最后,通过仿真实例证明了理论结果的正确性。

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