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Control strategy of self-cooled static var generator |
JIAO Xuqiang1, ZHU Gengfeng1, CHEN Xiaoxu2, XI Peng2 |
1. New Energy Branch of Hua’neng Qinghai Power Generation Co., Ltd, Xining 810000; 2. Liaoning Rongxin Xingye Electric Power Technology Co., Ltd, Anshan, Liaoning 114000 |
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Abstract The abundance of electrical equipment leads to the excessive reactive power content in the power grid, then a large number of reactive power compensation devices have been used. In the application of reactive power compensation device, problems such as high temperature damage components and explosion often occur. In order to solve these problems, a kind of self-cooled static reactive power compensation generator is developed. The static reactive compensation generator is a kind of compensating device for automatic capacity limiting based on cabinet, insulated gate bipolar transistor (IGBT) and the temperature parameters of the reactor. The control strategy of this device is changing the reactive current of the static reactive compensation device according to temperature changes, thus realizing the automatic capacity limiting. Since the capacity of the static reactive compensation generator can be automatically adjusted, it not only improves the reliability of the device but also extends the service life of the device.
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Received: 27 November 2020
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[1] 汤茂然. 一种新型静止无功发生器的设计与实现[J]. 无线互联科技, 2019, 16(4): 71-75. [2] 张中胜, 于海波, 盛晓东, 等. SVG热损耗计算及散热设计[J]. 机械设计与制造工程, 2019, 48(12): 76-79. [3] 赵涛, 张兴, 王明达, 等. 级联固态变压器在SVG模式下的控制策略[J]. 电力电子技术, 2020, 54(4): 8-10. [4] 武海涛, 刘永和. 一种新型SVG的拓扑与控制[J]. 电力电子技术, 2018, 52(11): 108-111. [5] 龚博, 赵建阳, 刘会巧. 基于静止无功发生器分相控制的电压暂降治理技术[J]. 电气技术, 2020, 21(9): 33-38, 44. [6] 陈玉, 文明浩, 尹项根, 等. 配电变压器集成式级联STATCOM原理与设计[J]. 电工技术学报, 2018, 33(12): 2861-2872. [7] 邓惠华, 李国良, 周晓明, 等. 基于协调控制SVG的低压配网三相负荷不平衡治理技术[J]. 电工技术学报, 2017, 32(增刊1): 75-83. [8] 刘旭强, 智泽英, 安旭涛, 等. 级联H桥型SVG的控制策略研究[J]. 电气自动化, 2019, 41(2): 4-7. [9] 孙曙光, 刘建强, 刘旭林, 等. 基于SVG+智能电容的混合式无功补偿系统研究与设计[J]. 电测与仪表, 2019, 56(1): 128-135. [10] 张永年, 宋红为, 吴兆彬. 基于配电网的混合补偿控制策略[J]. 自动化与仪表, 2019, 34(10): 1-4, 9. [11] 刘国营, 李德存, 翟保豫, 等. 静止无功发生器在电力系统中的应用[J]. 电气技术, 2017, 18(7): 82-85. |
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