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Distributed Formal Analysis for Power Networks With Deep Integration of Distributed Energy Resources

机译:深度整合分布式能源的电网分布式形式分析

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摘要

A scalable distributed formal analysis (DFA) via reachable set computation is presented to efficiently evaluate the stability of large-scale interconnected power networks under heterogeneous disturbances induced by high penetration of distributed energy resources (DERs). Based on rigorous mathematical derivation, DFA is able to directly compute the boundaries of all possible dynamics and provide stability information, which is unattainable by traditional time-domain simulations or direct methods. An N+M decomposition approach is established to decouple a large-scale networked system and enable distributed reachable set calculations while also preserving the privacy of each subsystem. Numerical examples on a networked microgrid system show that DFA facilitates the efficient calculation and analysis of the impact DER disturbances can have on power network dynamics, which provides a potent means of optimizing the system's operation. Therefore, DFA provides an invaluable tool for designing and operating the interconnected power networks of the future, which will feature the deep integration of DERs.
机译:提出了通过可达集计算进行可扩展的分布式形式分析(DFA),以有效评估在分布式能源(DERs)的高渗透率引起的非均质干扰下的大型互联电网的稳定性。基于严格的数学推导,DFA能够直接计算所有可能动力学的边界并提供稳定性信息,这是传统时域仿真或直接方法无法实现的。建立了N + M分解方法以解耦大型网络系统,并实现分布式可达集计算,同时还保留每个子系统的隐私。联网微电网系统上的数值示例表明,DFA有助于有效计算和分析DER干扰对电网动力学的影响,这为优化系统运行提供了有效的手段。因此,DFA为设计和操作未来的互连电源网络提供了宝贵的工具,它将具有DER的深度集成的特点。

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