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基于固态切换开关的感应电机类负荷电源快速切换新策略及参数计算

崔学深 张自力 王泽忠 李和明 杨娅萍

电工技术学报2016,Vol.31Issue(18):21-28,8.
电工技术学报2016,Vol.31Issue(18):21-28,8.

基于固态切换开关的感应电机类负荷电源快速切换新策略及参数计算

Novel Rapid Power Switching Strategy and Its Parameter Calculation of Induction Motor-Load Based on Solid State Transfer Switch

崔学深 1张自力 2王泽忠 1李和明 1杨娅萍3

作者信息

  • 1. 华北电力大学电气与电子工程学院北京 102206
  • 2. 国网邯郸供电公司邯郸 056002
  • 3. 国网河北成安县供电公司成安 056700
  • 折叠

摘要

Abstract

As an important load of naval vessels, electric plants and steel plants, induction motor should be switched rapidly from main source to alternative source after its power outages. However, the transient inrush produced by such dynamic load under the adverse conditions would have serious consequences. Accordingly, a novel rapid power switching control strategy of induction motor load was proposed based on solid state transfer switch (SSTS) in this paper. The proposed strategy could not only rapidly transfer the critical load from main source to alternative source, but also effectively suppress the transient inrush under the condition of the various phase-angle differences between the two sources. Then, the complex transient of induction motor during the switching control process of the alternative source was analyzed. And the main factors affecting the suppression of the transient inrush were discussed. Besides, the relationship between control parameters and current peak values was explained when the phase-angle difference between the two sources was known. The control parameters could be obtained by the requirement of the current-limit suppression. Finally, the calculation and test results of the stator currents verified that the proposed rapid power switching strategy and the parameters calculation were correct and effective.

关键词

电源快速切换新策略/固态切换开关/控制参数/限流/感应电机

Key words

Novel rapid power switching strategy/solid state transfer switch/control parameters/current limit/induction motor

分类

信息技术与安全科学

引用本文复制引用

崔学深,张自力,王泽忠,李和明,杨娅萍..基于固态切换开关的感应电机类负荷电源快速切换新策略及参数计算[J].电工技术学报,2016,31(18):21-28,8.

基金项目

中央高校基本科研业务费专项资金(13XS06)和国家自然科学基金(51077048)资助项目。 ()

电工技术学报

OA北大核心CSCDCSTPCD

1000-6753

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