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Harmonic reduction mechanism at DC link of two different 24-pulse rectifiers

机译:两个不同的24脉冲整流器的直流母线的谐波抑制机制

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摘要

In order to improve the ability of harmonic reduction at DC link of multi-pulse rectifier (MPR), the harmonic reduction mechanism at DC link of two kinds of 24-pulse rectifiers with double-tapped interphase reactor (IPR) or auxiliary single-phase full-wave rectifier (ASFR) was investigated. According to the configuration and Ampere-Turn balance with double-tapped IPR and single full wave rectifier, the function and operation mode of both rectifiers were analyzed. The effect of different operation mode on output currents of the two bridge rectifiers, input current of rectifiers, load voltage were also analyzed, and the theoretical values of turn ratios of both rectifiers were calculated. Theoretical analysis and simulation results show that because of the different operation mode of diodes between double-tapped IPR and ASFR, the modulating effect of currents and voltages of two bridge rectifiers is different. Therefore, the input currents and load voltages of both rectifiers are also different. In addition, under the optimal condition, both two 24-pulse rectifiers can reduce the 5th, 7th, 11th, 13th, 17th, and 19th harmonics, and depress the ripple coefficient of load voltage.
机译:为了提高多脉冲整流器(MPR)直流环节的谐波降低能力,两种带有双抽头相间电抗器(IPR)或辅助单相的两种24脉冲整流器的直流环节的谐波降低机理对全波整流器(ASFR)进行了研究。根据双抽头IPR和单全波整流器的配置和安培-转平衡,分析了两个整流器的功能和工作模式。分析了不同工作模式对两个桥式整流器输出电流,整流器输入电流,负载电压的影响,并计算了两个整流器匝数比的理论值。理论分析和仿真结果表明,由于双抽头IPR和ASFR之间的二极管工作模式不同,两个桥式整流器的电流和电压的调制效果是不同的。因此,两个整流器的输入电流和负载电压也不同。此外,在最佳条件下,两个24脉冲整流器都可以降低5、7、11、13、17和19次谐波,并降低负载电压的纹波系数。

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