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Formation control using adaptive parameter-dependent potential functions

机译:使用自适应参数相关势函数的地层控制

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In this paper we present a formation control approach based on Gaussian potential functions, each parametrized by an agent-related control parameter. This results in different characteristics of attractive and repulsive forces among agents and targets, as well as among agents themselves and dependence of the formation's potential structure on the change of agent's configurations. Furthermore, we show that the undesired stable equilibria can be eliminated by the mutual interaction of agents. This leads to the characteristics change of the elementary potential functions achieved by adaptation. The introduced adaptation changes the agent-related control parameters step-wise depending on the acquired equilibrium state. The proposed approach is implemented and validated in simulation and experimentally.
机译:在本文中,我们提出了一种基于高斯势函数的编队控制方法,每个函数均由与代理相关的控制参数进行参数设置。这导致了代理和目标之间以及代理自身之间的吸引力和排斥力的不同特征,以及地层的潜在结构对代理构型变化的依赖性。此外,我们表明不期望的稳定平衡可以通过试剂的相互作用来消除。这导致通过自适应实现的基本势能的特性变化。引入的适应性根据所获取的平衡状态逐步更改与代理相关的控制参数。所提出的方法在仿真和实验中得以实现和验证。

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