HVDC tie links in smart power grids: a versatile control strategy of VSC converters

D. Lauria, F. Mottola, C. Pisani, Francesco Del Pizzo, E. Carlini, G. Giannuzzi
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引用次数: 1

Abstract

The forced switching converters are the kernel of the modern paradigm of VSC-HVDC system. It is widely recognized that appropriate control laws make these converters more advantageous than the traditional line commutated ones. They can play a versatile role by properly controlling active and reactive powers between electrical networks, improving the dynamic performances of the whole system. Besides this is more and more motivated by the wide spreading penetration of renewable resources. In this paper after a few references to basic concepts, a possible control strategy of VSC-HVDC transmission system is discussed. With respect to a two-area system with AC-DC link, a combined control law is investigated for improving inertial and primary frequency response. The control law is based upon the equivalent HVDC tie link synchronization coefficient which allows determining the reference value of the AC voltage reference angles of the converters. A damping action is further added for improving the power swings damping. The simulations performed with a simple but quite general case study permit to confirm the validity and the goodness of the proposed control strategy.
智能电网中的高压直流连接:VSC变流器的通用控制策略
强制开关变流器是现代直流—高压直流系统的核心。人们普遍认为,适当的控制律使这些变换器比传统的线路换向变换器更有优势。通过合理地控制电网间的有功和无功功率,改善整个系统的动态性能,可以发挥多种作用。此外,可再生资源的广泛普及也越来越推动了这一趋势。本文在参考了一些基本概念的基础上,讨论了一种可能的直流-直流输电系统控制策略。针对交直流两区系统,研究了一种改善惯性频率响应和主频率响应的组合控制律。该控制律基于等价的高压直流并网同步系数,可以确定变流器交流电压参考角的参考值。进一步增加了阻尼作用,以改善功率振荡阻尼。通过一个简单但非常普遍的案例研究进行了仿真,证实了所提出控制策略的有效性和优越性。
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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