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An Improved Control Strategy of Three-Phase PWM Rectifiers Under Input Voltage Distortions and DC-Offset Measurement Errors

机译:输入电压失真和直流偏移测量误差下三相PWM整流器的改进控制策略

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摘要

This paper proposes an enhanced current control strategy to reject the impact of dc-offset measurement error and the distortion in the supply voltage on the dc output voltage and the input current performance of three-phase pulse-width modulation rectifiers. The proposed current controller designed in the synchronous reference frame is developed with a proportional integral (PI) and two vector PI (VPI) controllers. The PI controller regulates the fundamental current to follow its reference generated from outer dc-link voltage control, meanwhile two VPI controllers tuned at the fundamental grid frequency ( ) and are employed to eliminate the dc and harmonic components in the input current. Compared with the standard resonant controllers, the proposed VPI controller offers some advantages such as simpler and straightforward tuning process for controller gains and more robust control system against control delay time and frequency variations. Thanks to the effectiveness of the VPI controllers, the dc output voltage is controlled at a stable manner without any ac ripple, and the three-phase input currents are controlled to be balanced, sinusoidal, and extremely low dc component despite the presence of the dc-offset measurement error and distorted supply voltage conditions. Various experimental tests are provided to verify the effectiveness of the proposed control algorithm.
机译:本文提出了一种增强的电流控制策略,以消除直流偏移测量误差和电源电压畸变对三相脉冲宽度调制整流器的直流输出电压和输入电流性能的影响。在同步参考系中设计的拟议电流控制器是使用比例积分(PI)和两个矢量PI(VPI)控制器开发的。 PI控制器调节基本电流,使其遵循外部直流链路电压控制产生的参考值,同时两个VPI控制器以基本电网频率()进行调谐,并用于消除输入电流中的直流分量和谐波分量。与标准谐振控制器相比,建议的VPI控制器具有一些优点,例如,控制器增益的调整过程更简单明了,针对控制延迟时间和频率变化的控制系统更强大。由于VPI控制器的有效性,可以稳定地控制直流输出电压而没有任何交流纹波,并且即使存在直流电,也可以将三相输入电流控制为平衡,正弦和极低的直流分量。偏移测量误差和电源电压条件失真。提供各种实验测试以验证所提出的控制算法的有效性。

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