一种针对频率下降和系统停电的互联电网自适应应急控制方法

Ansi Wang, Yong Tang, Huadong Sun, Wei Wu, Jun Yi
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引用次数: 7

摘要

当电力系统中出现较大的扰动时,由于实际功率不足或发电负荷不平衡,会导致系统频率下降。需要紧急控制动作,以立即停止系统退化,并尽量减少对系统的影响。本文提出了一种自适应应急控制方法,以防止系统过度频率下降甚至大面积停电。它由两个主要阶段组成。第一阶段,通过预测频率偏移,给出了是否触发自适应控制的实时触发准则;第二阶段的目标是设计一个最优的应急控制策略,以消除功率不平衡,同时使控制成本最小化。该策略不受传统离线控制策略表的限制。通过中国北方电网和中国中部电网互联电网的数值算例,验证了所提应急控制方法的有效性。该方法避免了大型电力系统复杂的暂态时域仿真,实现简单、高效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An adaptive emergency control method for interconnected power grids against frequency decline and system blackout
The occurrence of a large disturbance in a power system can lead to a decline in the system frequency due to a real power deficiency or generation-load imbalance. The emergency control action is required to stop the system degradation immediately and minimize the impact to the system. In this paper, an adaptive emergency control method is proposed to prevent the system excess frequency decline and even the large blackout. It consists of two main stages. In the first stage, the real-time triggering criterion deciding whether to trigger the adaptive control is presented by predicting the frequency excursion. The second stage aims to designing an optimal emergency control strategy, which eliminates the imbalance power whilst minimizing the control cost. The strategy cannot be limited by the traditional offline control strategy table. The effectiveness of the proposed emergency control method is demonstrated via numerical example on the inter-connected power grid of the North Grid of China and the Central Grid of China. The proposed method can be executed in a simple and efficient way because the complex transient time-domain simulations of large-scale power system can be avoided.
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