通过HVDC补充模型预测控制提高系统稳定性

M. M. Alamuti, R. Rabbani, S. K. Kerahroudi, G. Taylor
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引用次数: 3

摘要

一个国家内部或邻国之间长距离的大量电力传输需求以及海上风电场数量的快速增加,增加了高压直流链路的应用。除了高压直流系统的可控潮流功能外,先进控制器还可以扩展其功能,以改善交流系统的动态和暂态稳定。为了改善高压直流技术对交流系统稳定性的影响,本文提出了一种补充的高压直流系统有功功率控制器。采用模型预测控制(MPC)方法进行控制设计。研究了MPC控制器的权值整定和参数化的设计过程。此外,还验证了控制器模型缩减的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
System stability improvement through HVDC supplementary Model Predictive Control
Bulk power transfer requirements over long distances within a country or between neighboring countries as well as rapid increase in the number of offshore wind farms, have increased the application of high voltage DC links. Apart from the controllable power flow function of HVDC systems, advanced controllers can be employed to extend their functionality for dynamic and transient stability improvement of AC systems. As an attempt to improve the influence of HVDC technology on AC system stability, this paper proposes a supplementary active power controller for the HVDC system. The Model Predictive Control (MPC) approach is considered for the control design. The design process of weight tuning and parameterization of the MPC controller has been investigated. Additionally the effect of controller model reduction is demonstrated in the presented results.
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