Harmonic Analysis of Microprocessor based Three-Phase Improved Power Quality AC/AC Voltage Controller using Power MOSFETs

A. N. Arvindan, V. Sharma, M. Subbiah
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引用次数: 15

Abstract

A three-phase pulse width modulated AC/AC voltage converter using power MOSFETs that operate in a high-frequency chopping mode is proposed. The symmetrical multipulse modulation strategy (SMM), wherein several equidistant pulses per half cycle (M), are used, is adopted. The resulting harmonic output voltages are analyzed and compared with those of phase control. The analysis reveals that substantial decrease in lower order harmonics and their selective elimination takes place with increase in M. The magnitude of the harmonic voltages is computed in terms of M and duty cycle. From the power quality perspective, it is theoretically established and experimentally confirmed that, with resistive load, for the same per unit output voltage, the supply power factor in the SMM and phase control techniques is the same
基于功率mosfet的微处理器三相改进型电能质量交流电压控制器的谐波分析
提出了一种利用功率mosfet工作在高频斩波模式下的三相脉宽调制AC/AC电压变换器。采用对称多脉冲调制策略(SMM),每半周期(M)使用几个等距脉冲。分析了谐波输出电压,并与相位控制的输出电压进行了比较。分析表明,随着M的增加,低阶谐波的显著降低和选择性消除发生。谐波电压的幅值是根据M和占空比计算的。从电能质量的角度出发,理论建立和实验证实,在电阻性负载下,对于相同的单位输出电压,SMM和相位控制技术中的电源功率因数是相同的
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