在逆变器占主导地位的电力系统中用于快速频率控制的增强MPC

Ognjen Stanojev, U. Markovic, E. Vrettos, P. Aristidou, Duncan S. Callaway, G. Hug
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引用次数: 4

摘要

随着可再生能源比重的不断上升,未来电力系统在控制复杂性和系统惯性方面将面临重大变化,从而使电力系统的频率调节更具挑战性。本文提出了一种基于模型预测控制的并网电压源变换器(VSCs)控制方案,目的是利用其快速响应能力和可用的直流侧储能为系统提供快速的频率控制服务。基于支持向量机回归的观测器仅使用每个VSC的局部可用测量值来检测和估计系统干扰。然后通过状态空间预测预测频率演变,调整VSC功率输出以补偿干扰并防止频率阈值违规。通过对IEEE 39总线测试系统的详细时域仿真,对所提出的控制方案进行了评价,并证明了其有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced MPC for Fast Frequency Control in Inverter-Dominated Power Systems
Due to the rising shares of renewable energy sources, future power systems are facing significant changes in control complexity and system inertia, thus making frequency regulation in power systems more challenging. This paper proposes a novel control scheme based on model predictive control for grid-forming Voltage Source Converters (VSCs), with the goal of exploiting their fast response capabilities and available DC-side energy storage to provide fast frequency control service to the system. An observer based on support vector machine regression detects and estimates system disturbances using only locally available measurements at each VSC. Frequency evolution is then anticipated through state-space predictions and the VSC power output is adjusted to compensate the disturbance and prevent frequency threshold violations. The proposed control scheme is evaluated and its effectiveness demonstrated through detailed time-domain simulations of the IEEE 39-bus test system.
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