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Design and Stability of Load-Side Primary Frequency Control in Power Systems

机译:电力系统负载侧一次频率控制的设计与稳定性

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摘要

We present a systematic method to design ubiquitous continuous fast-acting distributed load control for primary frequency regulation in power networks, by formulating an optimal load control (OLC) problem where the objective is to minimize the aggregate cost of tracking an operating point subject to power balance over the network. We prove that the swing dynamics and the branch power flows, coupled with frequency-based load control, serve as a distributed primal-dual algorithm to solve OLC. We establish the global asymptotic stability of a multimachine network under such type of load-side primary frequency control. These results imply that the local frequency deviations on each bus convey exactly the right information about the global power imbalance for the loads to make individual decisions that turn out to be globally optimal. Simulations confirm that the proposed algorithm can rebalance power and resynchronize bus frequencies after a disturbance with significantly improved transient performance.
机译:我们提出了一种系统化的方法,通过制定最优负载控制(OLC)问题来设计用于电网中主频调节的无处不在的连续快速作用的分布式负载控制,其目的是最小化跟踪受电的工作点的总成本网络平衡。我们证明了摆动动力学和支路功率流,再加上基于频率的负载控制,可作为一种分布式原始对偶算法来求解OLC。我们建立了在这种负载侧一次频率控制下的多机网络的全局渐近稳定性。这些结果表明,每条总线上的局部频率偏差可准确传达有关负载全局功率不平衡的正确信息,从而做出最终成为全局最优的单个决策。仿真结果表明,提出的算法可以在发生干扰后重新平衡功率并重新同步总线频率,从而显着改善瞬态性能。

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