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文章摘要
PWM整流器无锁相环不平衡控制策略研究
Control strategy for PWM rectifier without PLL under unbalanced grid voltage
Received:July 13, 2015  Revised:July 13, 2015
DOI:
中文关键词: 扩展无功功率  电网电压不平衡  两相静止坐标系  PWM整流器
英文关键词: generalized reactive power  unbalanced grid voltage  two-phase stationary frame  PWM rectifier
基金项目:
Author NameAffiliationE-mail
Wu Qiong* School of Information and Electrical Engineering,China University of Mining and Technology 15262012855@126.com 
Zhang Xue School of Information and Electrical Engineering,China University of Mining and Technology  
Li Shanshan School of Information and Electrical Engineering,China University of Mining and Technology  
Gao Xiang School of Information and Electrical Engineering,China University of Mining and Technology  
Geng Yiwen School of Information and Electrical Engineering,China University of Mining and Technology  
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中文摘要:
      电网电压不平衡时,基于同步旋转坐标系的传统控制策略从六个功率分量中选取四个分量计算指令电流,导致剩余两个功率分量不受控。针对此问题,在两相静止坐标系下建立了基于扩展无功功率理论的瞬时功率模型,该模型利用四个功率分量计算四个静止坐标系下的指令电流,同时控制有功和无功功率的平均值及二次波动量。该方法省去了Park变换和锁相环,降低了系统的复杂程度,提高了系统的动态响应速度。以三相电压型PWM整流器为控制对象,进行了仿真和实验验证,结果表明所提出的方法能够抑制直流侧电压的二次波动并实现单位功率因数运行。
英文摘要:
      Traditional control strategy chooses four power components from six ones to calculate the reference current signals in synchronous rotating frame when the grid voltage is unbalanced and it leaves the rest of the power components uncontrolled. The instantaneous power model based on generalized reactive power in two-phase stationary frame is built to solve the above problem. The four reference current signals were derived through four power components in stationary frame, so the average value and the secondary fluctuations of active and reactive power were controlled simultaneously. Park transformation and phase-locked-loop (PLL) were omitted and complexity is reduced with the proposed method. Therefore, the dynamic performance was improved as well. Taking PWM rectifier as research object, simulation and experiment were carried out to verify the validity. The results showed that the secondary fluctuations of dc-side voltage were suppressed and the system can operate at unity power factor.
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