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DC-Bus Electrolytic Capacitor Stress in Adjustable-Speed Drives Under Input Voltage Unbalance and Sag Conditions

机译:输入电压不平衡和下垂条件下变速驱动器中的直流总线电解电容器应力

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This paper analyzes the effects of the input voltage unbalance and sags on the dc-bus electrolytic capacitors in adjustable-speed drives (ASDs) in order to predict their impact on expected capacitor lifetime. The key phenomenon that causes these problems is the transition of the rectifier stage from three-phase to single-phase operation. Since the equivalent series resistance increases at low frequencies, the low-order harmonic current components (e.g., 120 and 240 Hz) contribute disproportionately to the capacitor power losses and temperature rise, resulting in reduced lifetime. Closed-form expressions are developed for predicting these effects including the impact of finite line impedance, finite bus capacitance, and varying load. The impact of inverter space-vector pulsewidth-modulation switching on the capacitor loss is also included. Simulations and experimental tests are used to verify the accuracy and effectiveness of the closed-form analysis using a 5-hp ASD system
机译:本文分析了输入电压不平衡和骤降对可调速驱动器(ASD)中的直流母线电解电容器的影响,以预测其对预期电容器寿命的影响。导致这些问题的关键现象是整流器级从三相运行过渡到单相运行。由于等效串联电阻在低频下会增加,因此低阶谐波电流分量(例如120和240 Hz)对电容器的功率损耗和温度升高的贡献不成比例,从而缩短了使用寿命。开发了闭式表达式来预测这些影响,包括有限线路阻抗,有限总线电容和变化负载的影响。还包括了逆变器空间矢量脉宽调制切换对电容器损耗的影响。仿真和实验测试用于验证使用5 hp ASD系统进行闭合形式分析的准确性和有效性

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