可再生能源比例较高的农村配电系统有功无功功率协同调度方法

Anjiang Liu, Xinhao Li, Yue Li, Shuqing Hao, Yu Miao, Youzhuo Zheng, Junyu Xie, Qianqian Yao
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引用次数: 0

摘要

大规模分布式可再生能源接入农村配电网,催生了具有高比例新能源典型特征的新型农村配电系统,新型农村配电系统的优化调度成为保障电网安全稳定运行的重要课题。本文提出了一种可再生能源比例较高的农村配电系统有功无功协同优化调度方法。首先,建立有功支撑能力评价模型,定量评价农村配电系统的有功功率支撑能力和无功功率支撑能力,为调度部分提供数据基础和边界条件。然后,综合考虑电能损耗成本、配网运行成本、惩罚成本等因素,提出了可再生能源比例较高的农村配电系统有功无功协同优化调度方法。最后,构建了农村配电系统主动支持能力评估与调节平台,为农村配电系统的安全稳定运行提供技术支持服务。鉴于可再生能源比例较高的农村配电系统面临过载、过压等问题,本文旨在解决新型农村配电系统优化调控的关键技术难题。结果表明,本文提出的优化控制方法具有较好的安全性和经济性,有利于促进新型农村配电系统的建设和运行。
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Collaborative scheduling method of active-reactive power for rural distribution systems with a high proportion of renewable energy
Large-scale distributed renewable energy connected to the rural distribution network has given birth to a new rural distribution system with a high proportion of new energy typical characteristics, and the optimal scheduling of the new rural distribution system has become an important issue to ensure the safe and stable operation of the power grid. This paper proposes a method of active-reactive power collaborative optimization scheduling for rural power distribution system with a high proportion of renewable energy. Firstly, the active support capability evaluation model is established, and the active power support capability and reactive power support capability of rural power distribution system are quantitatively evaluated, which provides data basis and boundary conditions for the scheduling part. Then, considering power-loss cost, distribution network operation cost, and penalty cost, a method of active-reactive power collaborative optimization scheduling for rural power distribution systems with a high proportion of renewable energy is proposed. Finally, the active support capability evaluation and regulation platform of the rural power distribution system is built to provide technical support services for the safe and stable operation of the rural power distribution system. Given the problems of overload and overvoltage faced by rural power distribution systems with a high proportion of renewable energy, this paper aims to solve the key technical challenges of optimization and regulation of new rural power distribution systems. The results show that the optimized control method proposed in this paper has better security and economy, and is conducive to promoting the construction and operation of the new rural power distribution system.
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