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Decentralized bounded input bounded output stabilization of perturbed interconnected time-delay power systems with energy storages

机译:具有能量存储的扰动互连时滞电力系统的分散有界输入有界输出稳定

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This paper presents a new decentralized bounded input bounded output (BIBO) stabilization problem for a class of interconnected time-delay systems and its application to power systems with energy storages. We first provide conditions for the derivation of an ellipsoid that bounds a given linear functions of the state vector. Then, a design procedure is proposed to synthesize decentralized static output feedback controllers. The designed controllers guarantee that a given linear functions of the state vector, starting from any initial condition, converges exponentially to its prescribed zones. To deal with the time-delay issue, we use an improved weighted integral inequality recently reported in the literature to derive less conservative exponential stability conditions. Then, our presented control approach is applied to an interconnected power system integrated energy storages with multiple time delays. We synthesis decentralized static output feedback load frequency controllers to guarantee that the system frequency and interchanged power converge to their prescribed zones exponentially from any initial conditions. The controller's construction is simpler and easier for implementation due to only the local output measurements are required. In order to systematically obtain the controller gains, an effective procedure using linear matrix inequality based stabilisation criteria, which can be solved by various computation tools, is provided. Finally, the effectiveness of the proposed control scheme is verified by comprehensive simulations. (C) 2017 Elsevier Ltd. All rights reserved.
机译:针对一类相互连接的时滞系统,提出了一种新的分散式有界输入有界输出(BIBO)镇定问题,并将其应用于带储能的电力系统。首先,我们提供了一个椭球的导出条件,该椭球限制了状态向量的给定线性函数。然后,提出了一种综合去中心化静态输出反馈控制器的设计程序。设计的控制器可确保从任何初始条件开始,状态向量的给定线性函数都呈指数收敛至其指定区域。为了处理时间延迟问题,我们使用最近在文献中报道的改进的加权积分不等式来导出较不保守的指数稳定性条件。然后,我们提出的控制方法被应用于具有多个时间延迟的互连电力系统集成储能器。我们综合使用分散式静态输出反馈负载频率控制器,以确保系统频率和交流功率在任何初始条件下均呈指数收敛至指定区域。由于仅需要本地输出测量,因此控制器的结构更加简单,易于实现。为了系统地获得控制器增益,提供了使用基于线性矩阵不等式的稳定标准的有效程序,该程序可以通过各种计算工具来解决。最后,通过综合仿真验证了所提出控制方案的有效性。 (C)2017 Elsevier Ltd.保留所有权利。

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