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Interval exponential input-to-state stability for switching impulsive systems with application to hybrid control for micro-grids

机译:切换脉冲系统的区间指数输入到状态稳定性及其在微电网混合控制中的应用

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This paper studies the interval exponential input-to-state stability (interval e-ISS) for switching impulsive systems (SIS). The notions of interval e-ISS and interval event-e-ISS are defined for SIS. And the SIS are classified into the time-based SIS and the state-based SIS according to whether the switching control is driven by time or state. By using the decomposition of the interval matrix and the method of variation of constants formula, the equivalence between interval e-ISS and e-ISS is established for the time-based SIS. It shows the time-based SIS has interval e-ISS if and only if its average-value system has e-ISS. And the criteria of interval e-ISS and interval event-e-ISS for the time-based SIS and the state-based SIS are derived separatively. Then, the result is used to test the ISS property for a micro-grid under hybrid control. The simulations for the micro-grid have been worked out to illustrate the results.
机译:本文研究了切换脉冲系统(SIS)的区间指数输入到状态稳定性(interval e-ISS)。间隔e-ISS和间隔事件e-ISS的概念是为SIS定义的。根据切换控制是由时间驱动还是由状态驱动,将SIS分为基于时间的SIS和基于状态的SIS。通过使用区间矩阵的分解和常数变化公式的公式,建立了基于时间的SIS的区间e-ISS和e-ISS之间的等价关系。它表明基于时间的SIS具有间隔e-ISS且仅当其平均值系统具有e-ISS时。分别推导了基于时间的SIS和基于状态的SIS的区间e-ISS和区间事件-e-ISS准则。然后,将结果用于在混合控制下测试微电网的ISS特性。已经对微电网进行了仿真,以说明结果。

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