随机运动群执行具有物理参数的覆盖任务

K. Falkowski, Michał Duda
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引用次数: 0

摘要

本文描述了一种将物理参数实现到虚拟群算法解决方案中的尝试。它定义了需要知道单个对象的哪些物理参数才能将虚拟算法正确地转移到物理系统中。考虑因素是基于执行覆盖任务的随机运动群。测量了群中不同数量无人机完成任务的时间和能耗,从而确定了群的最佳大小。对变化变量的额外测试使我们能够确定它们对集群性能的影响。所提出的算法是一个离散时间的解决方案,每个测试都被划分为多个步骤。无人机的位置仅在与这些步骤相对应的时间内计算。在这些步骤之间,它们的位置是未知的,算法不会检查两架无人机的路径是否在随后的位置之间交叉。时间间隔越低,结果就越精确,但模拟测试需要更多的计算能力。进一步的工作应该考虑尽可能小的时间间隔或额外的功能,以检查无人机的路径是否没有交叉。
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Stochastic Movement Swarm Performing a Coverage Task with Physical Parameters
This paper describes an attempt of implementing physical parameters into a virtual swarm algorithm solution. It defines which physical parameters of the single object need to be known to properly transfer a virtual algorithm into a physical system. Considerations have been based on a stochastic movement swarm performing a coverage task. Time to finish the task and energy consumptions were measured for different numbers of drones in a swarm allowing to designate an optimal size of the swarm. Additional tests for changing variables allowed us to determine their impact on the swarm performance. The presented algorithm is a discrete-time solution and every test is divided into steps. Positions of the drones are calculated only in time corresponding to these steps. Their position is unknown between these steps and the algorithm does not check if the paths of two drones cross between subsequent positions. The lower the time interval, the more precise results, but simulating the test requires more computing power. Further work should consider the smallest possible time intervals or additional feature to check if the paths of the drones do not cross.
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审稿时长
53 weeks
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