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A Matrix Representation of a Markov Jump Linear System Applied to a Standalone Microgrid

机译:应用于独立微电网的马尔可夫跳跃线性系统的矩阵表示

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The analysis of microgrid stability requires an adequate modeling of the randomness in the disturbances affecting the system. For a microgrid operating in a standalone mode, abrupt disturbances are generated when local power sources and loads are switched on and off. Novel methods include the representation of microgrids as Stochastic Hybrid Systems. In this frame, continuous variations in the dynamic and algebraic states as well as discrete, random and abrupt effects are conjointly modeled. The purpose of this study is to present a detailed procedure to derive a matrix representation of a Markov Jump Linear System as a special case of the general stochastic hybrid system framework and apply it to an inverter-based microgrid. Numerical results in terms of the conditional moments of the stochastic model are presented and discussed.
机译:对微电网稳定性的分析需要对影响系统的干扰进行随机性的适当建模。对于以独立模式运行的微电网,当打开和关闭本地电源和负载时会产生突然的干扰。新方法包括将微电网表示为随机混合系统。在此框架中,对动态和代数状态的连续变化以及离散,随机和突变效应进行联合建模。本研究的目的是提出一种详细的过程,以得出马尔可夫跳跃线性系统的矩阵表示形式,作为一般随机混合系统框架的特例,并将其应用于基于逆变器的微电网。给出并讨论了基于随机模型条件矩的数值结果。

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