传统高压直流输电对试验电力系统影响的评估

R. Eriksson, V. Knazkins, L. Soder
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引用次数: 16

摘要

有几种方法可以提高电力系统的初摆暂态稳定性。一个适当的选择是,如果系统中有HVDC可用,则使用HVDC的高可控性。本文提出了一种改善直流输电系统首摆暂态的控制策略。该策略通过高压直流输电控制电力,使系统在扰动时更加暂态稳定。所提出的控制策略由pd -控制器和前馈控制组成,其中pd -控制器具有快速响应的特性,因此使用pd -控制器是合适的。由于系统的行为是已知的,因此为了进一步改善第一摆振,采用了前馈控制。以两个基准电力系统为例,分析了该策略的有效性。根据高压直流电源的控制方式不同,瞬态阻尼也不同。pd -控制器工作良好,阻尼了第一次摆振瞬态,使系统保持稳定。在断线后再加功率步进,暂态摆幅减小,系统性能较好。通过在高压直流输电系统中应用功率阶跃,也有可能进一步改善第一次摆幅振荡,这将补偿由于干扰引起的线路断开而导致的功率不足。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the assessment of the impact of a conventional HVDC on a test power system
There are several possibilities to improve the first swing transient stability in a power system. One adequate option is to use the high controllability of the HVDC if HVDC is available in the system. This paper presents a control strategy for HVDC to improve the first swing transient. The strategy controls the power through the HVDC to make the system more transient stable during disturbances. The proposed control strategy consists of the PD-controller and feed-forward control, the use of a PD-controller is appropriate since it has the property of fast response. To improve the first swing oscillation even more the feed-forward control is used, since the behavior of system due to the disconnection is known. Two bench mark power systems are subjected to large disturbances to examine the effectiveness of the proposed strategy. Depending on how the power through the HVDC is controlled the transients damp differently. The PD-controller works well and damps the first swing oscillation transient so the system remains stable. When a power step also is applied after the line is disconnected, the transient swing becomes lower and the behaviour of the system is better. There is also a possibility to improve the first swing oscillation even more, by applying a power step through the HVDC which will compensate for the lack of power due to the disconnection of the line caused by the disturbance.
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