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A Topologically Inspired Path-Following Method With Intermittent State Feedback

机译:具有间歇性状态反馈的拓扑启发路径之后的方法

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摘要

Autonomous systems often operate in environments where state feedback may not be available, such as in anti-access and area denial environments. In these environments, it is often required that an agent track a path, despite interruptions in state feedback. As a result, the class of Relay-Explorer problems has emerged, where a switched system approach is used to account for intermittent state feedback. Past work on these problems established a framework for developing dwell-time conditions for stable tracking using these methods. However, existing work only applies to a limited class of reference paths and feedback region geometries. This letter advances a topologically inspired method for guaranteeing re-acquisition of feedback for nearly arbitrary geometries in arbitrary dimensions, all while relaxing the dwell-time conditions and retaining the uniformly ultimately bounded stability result from preceding work. Numerical experiments in the plane demonstrate an increase of hundreds of percentage points-even for fairly generic geometries-in the tracking error the agent could afford, using the proposed method, without sacrificing stability.
机译:自主系统通常在可能无法使用状态反馈的环境中运行,例如在防置访问和区域拒绝环境中。在这些环境中,尽管状态反馈中断,但通常需要代理跟踪路径。因此,出现了中继资源管理器问题,其中交换系统方法用于考虑间歇性状态反馈。过去的工作在这些问题上建立了一种用于开发使用这些方法的稳定跟踪的停留时间条件的框架。但是,现有工作仅适用于有限的参考路径和反馈区几何形状。这封信推进了拓扑上灵感的方法,以保证重新获取任意尺寸的几乎任意几何形状的反馈,一切都在放松停留时间条件并保留从前工作的均匀最终有界稳定的结果。平面中的数值实验表明了数百个百分点 - 即使对于相当通用的几何形状 - 在跟踪误差中,代理商可以使用所提出的方法,而不牺牲稳定性。

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