Determination of optimal converter operating points regarding static voltage stability and system losses in hybrid transmission systems

F. Bennewitz, S. Weck, J. Hannappel, J. Hanson
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Abstract

The transition of the European electrical energy system leads to rising installations of renewable energy sources (RES). Average transmission distances and active and reactive power losses increase, because RES are mainly installed at sites with a high yield of primary energy. This development affects the voltage stability of the system. To address these challenges, a meshed high voltage direct current (HVDC) overlay system might be used. Within this publication an optimization algorithm is proposed to determine optimal converter operating points. Thereby an iterative load flow approach determines voltage stability limit. A 58 AC busbar transmission system is used where 9 converters are applied forming a HVDC overlay system. Results show that the optimization approach is able to determine optimal operating points regarding static voltage stability as well as regarding overall system losses.
混合输电系统中考虑静态电压稳定性和系统损耗的最佳变流器工作点的确定
欧洲电力能源系统的转型导致可再生能源(RES)的安装增加。平均输电距离和有功和无功损耗增加,因为可再生能源主要安装在一次能源产量高的站点。这种发展影响了系统的电压稳定性。为了解决这些问题,可以使用网状高压直流(HVDC)覆盖系统。本文提出了一种确定转炉最佳工作点的优化算法。因此,迭代潮流法确定了电压稳定极限。采用58交流母线传输系统,其中9台变流器组成高压直流覆盖系统。结果表明,该优化方法能够确定静态电压稳定性和系统整体损耗的最佳工作点。
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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