含高磁导率分布式电源的配电网双层耦合调压策略研究

Shaobo Yang, Liang Meng, C. Su, Jing Tian, Lei Wang, Li Guo
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引用次数: 0

摘要

分布式电源在配电网中的普及率不断提高,配电网中电压极限违规问题逐渐凸显。本文将线性化方法与电压灵敏度相结合,提出了一种两级线性化电压调节策略。第一阶段,建立最优电压调节模型。针对传统模型非凸非线性难以求解的问题,分析了变压器抽头和分布式电源无功对网损和节点电压的影响,构建了线性化电压调节。该模型有效地降低了优化问题的计算复杂度和计算时间。第二阶段,针对实际运行中的不确定因素,提出了基于下垂特性的原位补偿和基于电压灵敏度的综合电压调整策略。基于第一阶段的线性化调度结果,再现了光伏发电的输出。该调节保证了电压调节算法的鲁棒性,并通过实例分析验证了本文方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Double-Layer Coupling Voltage Regulation Strategy for Distribution Network Containing High Permeability Distributed Generation
The penetration rate of distributed power sources in the distribution network continues to increase, and the problem of voltage limit violations in the distribution network has gradually become prominent. This paper combines the linearization method and the voltage sensitivity to propose a two-stage linearization voltage regulation strategy. In the first stage, the optimal voltage regulation model is established. Aiming at the problem that the traditional model is difficult to solve by non-convex and nonlinearity, this paper analyzes the influence of transformer taps and distributed power reactive power on network loss and node voltage, and constructs linearized voltage regulation. The model effectively reduces the calculation complexity and calculation time of the optimization problem. In the second stage, in view of the uncertain factors in actual operation, an in-situ compensation based on droop characteristics and a comprehensive voltage adjustment strategy based on voltage sensitivity are proposed. Based on the linearized scheduling results of the first stage, the output of photovoltaic power is reproduced. The regulation ensures the robustness of the voltage regulation algorithm, and the effectiveness of the method proposed in this paper is verified through case analysis.
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