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Non-conservative and tractable stability tests for general linear interconnected systems with an application to Power Systems

机译:用于一般线性互连系统的非保守和易易刻的稳定性测试,其应用于电力系统

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Existing Lyapunov methods for verifying stability of linear interconnected systems provide either non-conservative but non-tractable global conditions, or tractable but conservative local conditions. In this paper we provide non-conservative and tractable stability tests for general linear interconnected systems. Firstly, we exploit the concept of a finite-time Lyapunov function to derive a global stability test that can be implemented efficiently by parallelization. Secondly, the same concept is further employed to derive local, dissipativity-type conditions, that can be formulated as a set of distributed linear matrix inequalities. Thirdly, an assessment of all stability tests for linear interconnected systems in terms of complexity, scalability and applicability is performed. The usefulness of the developed stability tests for real-life applications is illustrated on benchmark power system networks.
机译:现有的Lyapunov用于验证线性互连系统的稳定性的方法提供了非保守但非贸易的全球条件,或贸易的局部条件。在本文中,我们为一般线性互连系统提供了非保守和易诊的稳定性测试。首先,我们利用有限时间Lyapunov函数的概念来得出通过并行化有效实现的全局稳定性测试。其次,进一步采用相同的概念来导出局部耗散型条件,其可以被配制成一组分布式线性矩阵不等式。第三,执行对复杂性,可扩展性和适用性的线性互连系统的所有稳定性测试的评估。基准电力系统网络示出了现实寿命应用的发达稳定性测试的有用性。

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