Evaluation Method of Distributed Photovoltaic Admission Capability Based on Voltage Sensitivity and Multi-Scenario Power Flow Simulation

Xiaowen Huangfu, Qiuyan Li, Yan Ding, Yong-ji Guo, Hanjie Zhao, Cuiping Li, Dapeng Sun, Dongbo Wang, Xiangchen Hou, Jiangchuan Fan
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Abstract

Under the Background of ‘Carbon peaking and Carbon neutrality’ goals, with the rapid development of clean energy, power system is gradually transforming to low-carbon. The proportion of distributed photovoltaic in the distribution network increases rapidly, and the uncertainty of its output and the randomness of the access scheme can easily lead to dramatic changes in line power flow and bring about operational safety problems. Aiming at the problem that high proportion of distributed photovoltaic access affects the safe and stable operation of distribution network, this paper proposes a distributed photovoltaic acceptance ability evaluation method based on voltage sensitivity and multi-scenario power flow simulation. The method uniformly generates the possible access scheme of distributed photovoltaic in the network and simulates the multi-power flow. Finally, by comparing the peak voltage of each scheme, the distributed photovoltaic carrying capacity of distribution network is evaluated. Taking IEEE 14-bus system as an example, the results show that the proposed method can effectively solve the calculation problem of distributed photovoltaic carrying capacity of distribution network.
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基于电压敏感性和多场景潮流仿真的分布式光伏接入能力评估方法
在“碳调峰和碳中和”目标的背景下,随着清洁能源的快速发展,电力系统正在逐步向低碳转型。分布式光伏在配电网中的比重迅速增加,其输出的不确定性和接入方案的随机性容易导致线路潮流的剧烈变化,带来运行安全问题。针对分布式光伏接入比例过高影响配电网安全稳定运行的问题,提出了一种基于电压敏感性和多场景潮流仿真的分布式光伏接收能力评价方法。该方法统一生成分布式光伏在网络中的可能接入方案,并模拟多潮流。最后,通过比较各方案的峰值电压,对配电网的分布式光伏承载能力进行评价。以IEEE 14总线系统为例,结果表明,该方法能有效地解决配电网分布式光伏容量的计算问题。
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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