Application of optimal power flow for voltage stability problem

J. Kubokawa, H. Sasaki, S. Ahmed, G. Strbac
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引用次数: 4

Abstract

Competitive electricity market often requires the separation of transmission and generating services; therefore, the transmission system operator does not have an impact on short and long term generation patterns. At the same time, the transmission operator needs to accommodate various transactions and generation patterns. In the desire to accommodate market-based transactions, the transmission operator is very much interested in quantifying the various stability margins (voltage, dynamic, etc.) and in determining the level of robustness of the transmission system. In the case of voltage stability, the index of robustness used is the difference from the current operating condition to an infeasible point. Particularly relevant is the amount of additional reactive load that can be accommodated before the system experiences a voltage collapse. In this paper, we present a development of OPFs based on primal-dual nonlinear interior-point method, which can handle maximum loadability constraint under contingency state. The developed OFF can solve the optimal operating point while keeping enough loadability margin under contingency state. In order to demonstrate the advantage of the proposed methods, the OPFs are applied to several test systems under various operating conditions.
最优潮流在电压稳定问题中的应用
竞争激烈的电力市场往往要求输电和发电业务分离;因此,输电系统运营商不会对短期和长期发电模式产生影响。同时,输电运营商需要适应各种交易和发电模式。为了适应基于市场的交易,输电运营商对量化各种稳定裕度(电压、动态等)和确定输电系统的鲁棒性水平非常感兴趣。在电压稳定的情况下,鲁棒性的指标是从当前运行状态到不可行点的差值。特别相关的是在系统经历电压崩溃之前可以容纳的额外无功负载的数量。本文提出了一种基于原始-对偶非线性内点法的opf,它可以处理偶然性状态下的最大负荷约束。所提出的OFF方法能够在应急状态下求解最优工作点,同时保持足够的负荷裕度。为了证明所提出的方法的优势,opf应用于不同工作条件下的几个测试系统。
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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