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Connecting Border Collision With Saddle-Node Bifurcation in Switched Dynamical Systems

机译:切换动力系统中边界碰撞与鞍节点分叉的连接

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Switched dynamical systems are known to exhibit border collision, in which a particular operation is terminated and a new operation is assumed as one or more parameters are varied. In this brief, we report a subtle relation between border collision and saddle-node bifurcation in such systems. Our main finding is that the border collision and the saddle-node bifurcation are actually linked together by unstable solutions which have been generated from the same saddle-node bifurcation. Since unstable solutions are not observable directly, such a subtle connection has not been known. This also explains why border collision manifests itself as a "jump" from an original stable operation to a new stable operation. Furthermore, as the saddle-node bifurcation and the border collision merge tangentially, the connection shortens and eventually vanishes, resulting in an apparently continuous transition at border collision in lieu of a "jump." In this brief, we describe an effective method to track solutions regardless of their stability, allowing the subtle phenomenon to be uncovered.
机译:已知切换动力系统表现出边界冲突,其中终止特定的操作,并且当改变一个或多个参数时,假定新的操作。在本简介中,我们报告了此类系统中边界碰撞与鞍形节点分叉之间的微妙关系。我们的主要发现是,边界碰撞和鞍形节点分叉实际上是由不稳定的解链接在一起的,该不稳定解是由同一鞍形节点分叉产生的。由于不能直接观察到不稳定的解决方案,因此尚不清楚这种微妙的联系。这也解释了为什么边界冲突表现为从原始稳定操作到新的稳定操作的“跳跃”。此外,随着鞍形节点的分叉和边界碰撞切向地合并,连接缩短并最终消失,从而导致边界碰撞处明显地连续过渡,而不是“跳跃”。在本文中,我们描述了一种有效的方法来跟踪解决方案,而不管其稳定性如何,从而可以发现细微的现象。

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