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Controlled synchronization of mechanical systems with a unilateral constraint

机译:具有单边约束的机械系统的受控同步

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Abstract: This paper addresses the controlled synchronization problem of mechanical systems subjected to a geometric unilateral constraint as well as the design of a switching coupling law to obtain synchronization. To define the synchronization problem, we propose a distance function induced by the quotient metric, which is based on an equivalence relation using the impact map. A Lyapunov function is constructed to investigate the synchronization problem for two identical one-dimensional mechanical systems. Sufficient conditions for the individual systems and their controlled interaction are provided under which synchronization can be ensured. We present a (coupling) control law which ensures global synchronization, also in the presence of grazing trajectories and accumulation points (Zeno behavior). The results are illustrated using a numerical example.
机译:摘要:本文讨论了受几何单边约束的机械系统的受控同步问题,以及获得同步的开关耦合定律的设计。为了定义同步问题,我们提出了由商度量导出的距离函数,该函数基于使用冲击图的等价关系。构造了一个Lyapunov函数来研究两个相同的一维机械系统的同步问题。为各个系统及其受控的交互提供了充分的条件,可以确保同步。我们提出了一个(耦合)控制定律,该定律可确保在放牧轨迹和累积点(Zeno行为)的情况下实现全局同步。使用数值示例说明了结果。

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