Local voltage control in distribution networks: A game-theoretic perspective

Xinyang Zhou, J. Tian, Lijun Chen, E. Dall’Anese
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引用次数: 20

Abstract

Inverter-based voltage regulation is gaining importance to alleviate emerging reliability and power-quality concerns related to distribution systems with high penetration of photovoltaic (PV) systems. This paper seeks contribution in the domain of reactive power compensation by establishing stability of local Volt/VAr controllers. In lieu of the approximate linear surrogate used in the existing work, the paper establishes existence and uniqueness of an equilibrium point using nonlinear AC power flow model. Key to this end is to consider a nonlinear dynamical system with non-incremental local Volt/VAr control, cast the Volt/VAr dynamics as a game, and leverage the fixed-point theorem as well as pertinent contraction mapping argument. Numerical examples are provided to complement the analytical results.
配电网局部电压控制:博弈论视角
基于逆变器的电压调节对于缓解与光伏系统高渗透率配电系统相关的可靠性和电能质量问题越来越重要。本文通过建立局部伏安控制器的稳定性,寻求在无功补偿领域的贡献。本文用非线性交流潮流模型代替了现有工作中使用的近似线性代理,建立了平衡点的存在唯一性。实现这一目标的关键是考虑一个具有非增量局部Volt/VAr控制的非线性动力系统,将Volt/VAr动力学视为一个博弈,并利用不动点定理和相关的收缩映射论证。数值算例对分析结果进行了补充。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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