偏远稀疏地区供电线路延伸的电力电子调压器配置方法
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赵建勇(1987-),男,博士研究生,中级,主要从事新能源发电技术及电气传动研究;E-mail:jyzhao@zju.edu.cn

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TM715

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国网青海省电力公司科技项目(5228201900G5)


Configuration method of power electronic voltage regulator for power supply line extension in sparse remote areas
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    摘要:

    为解决偏远稀疏地区配电网在运行中出现的经济性差、供电半径长、电压质量低等问题,首先采用一种基于电力电子调压器的有功无功和电压的补偿方法,实现供电半径延长和快速精准调整电压;其次,为合理配置电力电子调压器在配电网中的作用,进一步设计电力电子调压器选址定容的双层优化模型;然后,以优化模型上层考虑潮流灵敏度因子为主,电压稳定指标为辅,选出最佳安装位置,下层考虑电压稳定性和经济性确定最优安装容量。最后以基于偏远稀疏地区配电网改进的IEEE33节点进行了算例验证,利用动态惯性权重粒子群算法求解模型最优值,优化结果证明了该配置方法的可行性和有效性。

    Abstract:

    In order to solve the poor economy, long power supply radius, and low voltage quality problems in the operation of the distribution network in sparse and remote areas, a compensation method of active/reactive power and voltage based on power electronic voltage regulator is adopted to achieve the extension of power supply radius and adjust the voltage accurately and quickly. Then, in order to reasonably configure the role of power electronic voltage regulator in the distribution network, a bi-level optimization model for its location and capacity is designed. The upper layer of the optimization selects the best installation positions by considering the power flow sensitivity factor as the main factor and the voltage stability index as a supplement. The lower layer considers the voltage stability and economy to determine the optimal installation capacity. Finally, an example is given based on the improved IEEE33 node of the distribution network in sparse and remote areas. The optimal value of the model is solved by utilizing the dynamic inertia weight particle swarm optimization algorithm. It is proven that the feasibility and effectiveness of the configuration method.

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赵建勇,年珩,陈文君,等.偏远稀疏地区供电线路延伸的电力电子调压器配置方法[J].电力科学与技术学报,2021,36(5):41-49.
Zhao Jianyong, Nian Hang, Chen Wenjun, et al. Configuration method of power electronic voltage regulator for power supply line extension in sparse remote areas[J]. Journal of Electric Power Science and Technology,2021,36(5):41-49.

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  • 在线发布日期: 2021-11-16
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