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Feasibility study on reactive power compensation by metro regeneration energy feeding device |
Cheng Jinran1, Ma Tianwen2, Yang Zhenyu1, Zhu Lijiao1 |
1. Kunming Metro Operation Co., Ltd, Kunming 650000; 2. Kunming Rail Transit Group Co., Ltd, Kunming 650000 |
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Abstract Through the comparison and analysis of the principle of the regenerative energy feeding devices in a metro traction substations and the static var generator which is in the main transformer station, the operation control method of the regenerative energy feeding system to generate reactive power is studied, and realizing the function of reactive power compensation for main substation assisted by regenerative energy feeding devices. The feasibility and effectiveness of the scheme were verified on the operational line site, which provided a new idea for optimizing equipment management and operation.
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Received: 20 August 2018
Published: 19 March 2019
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Cite this article: |
Cheng Jinran,Ma Tianwen,Yang Zhenyu等. Feasibility study on reactive power compensation by metro regeneration energy feeding device[J]. Electrical Engineering, 2019, 20(3): 118-121.
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URL: |
http://dqjs.cesmedia.cn/EN/Y2019/V20/I3/118
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[1] 汤蕴璆, 史乃. 电机学[M]. 北京: 机械工业出版社, 1999. [2] 王靖满, 黄书明. 城市轨道交通供电系统技术[M]. 上海: 上海科学普及出版社, 2011. [3] 耿亮, 虞苍璧, 刘宝诚. 城市轨道交通供电无功补偿设备安装及容量确定[J]. 电气技术, 2012, 13(5): 64-67. [4] 王彦峥, 苏鹏程. 城市轨道交通再生电能的吸收与利用分析[J]. 城市轨道交通研究, 2007, 10(6): 42-45. [5] 陈勇, 刘承志, 郑宁, 等. 基于逆变回馈的地铁再生制动能量吸收的研究[J]. 电气化铁道, 2011(3): 36-39. [6] 张灵芝. 双向变流型再生电能吸收利用系统研究[J]. 电气技术, 2015, 16(6): 38-43. [7] 刘斌. 城市轨道交通供电系统中压能馈装置应用分析[J]. 电气技术, 2016, 17(3): 148-151. [8] 孙才勤. 地铁供电系统谐波无功功率的综合治理方案[J]. 电气化铁道, 2009(5): 40-43. [9] 李健华, 郭立飞, 赵丽平. 牵引变压器空载谐波电流特性分析[J]. 电气技术, 2014, 15(10): 24-26. |
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