Coordinating Control of Reactive Power Optimization in Distribution Power System with Distributed Wind Energy

Qingfeng Tang , Jianhua Zhang , Linze Huang
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引用次数: 5

Abstract

Distributed generation (DG) systems are considered an integral part in future distribution power system. The reactive power injections from DG units, are seen as a cost-effective solution for distribution system voltage support, energy saving, and reliability improvement. This paper proposes a coordinating control method of reactive power optimization in distribution power system with distributed wind energy. The reactive capability limits of doubly fed induction generator (DFIG) are included in the optimization model. The problem of reactive power output/absorb of adjustable compensating capacitor and wind turbine (WT) is formulated as constrained conditions; differential evolution algorithm (DE) integrating depth-first search is developed to effectively obtain optimal solutions. The proposed algorithm is applied to a practical test system and results are compared and presented.

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分布式风电配电网无功优化的协调控制
分布式发电系统被认为是未来配电系统的重要组成部分。DG机组的无功功率注入被视为一种经济有效的配电系统电压支持、节能和可靠性提高的解决方案。提出了一种分布式风能配电网无功优化的协调控制方法。优化模型中考虑了双馈感应发电机(DFIG)的无功能力极限。将可调补偿电容器和风力发电机的无功输出/吸收问题表述为约束条件;为了有效地求解最优解,提出了融合深度优先搜索的差分进化算法。将该算法应用于实际测试系统,并对结果进行了比较。
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