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PWM Strategies for Common-Mode Voltage Reduction in Current Source Drives

机译:电流源驱动器中共模降压的PWM策略

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The common-mode voltage (CMV) in the motor drive system could damage the motor insulation and induce destructive bearing current. Various reduced CMV space vector modulation (RCMV SVM) methods have been proposed in both voltage source converter (VSC) and current source converter systems. Most of them reduce the CMV by avoiding the use of zero-state vectors. Recently, a zero-state vector selection strategy for CMV reduction in CSCs has been proposed, which allows the use of zero-state vectors and achieves reduced CMV without affecting the modulation index range and the harmonics performance of converters. This paper further investigates three possible zero-state vector selection strategies in RCMV SVM for current source drives where the PWM CSR and CSI are connected back to back. Among the three methods, Method 1 and Method 2 are suitable for CMV peak value minimization, while Method 3 is proposed for the average CMV reduction. These methods can then be considered for different types of drives (with or without isolation transformer) to reduce the insulation stress or to limit the resonance in the common mode circuit. Details of the three zero-state vectors selection methods are presented. Both simulation and experimental results are provided to verify their effectiveness.
机译:电机驱动系统中的共模电压(CMV)可能会损坏电机绝缘,并产生破坏性的轴承电流。在电压源转换器(VSC)和电流源转换器系统中都已经提出了各种减小的CMV空间矢量调制(RCMV SVM)方法。它们中的大多数通过避免使用零状态向量来降低CMV。近来,已经提出了用于降低CSC中的CMV的零状态矢量选择策略,其允许使用零状态矢量并实现降低的CMV,而不影响调制指数范围和转换​​器的谐波性能。本文进一步研究了RCMV SVM中针对电流源驱动器的三种可能的零状态矢量选择策略,其中PWM CSR和CSI背对背连接。在这三种方法中,方法1和方法2适用于CMV峰值最小化,而方法3被建议用于平均CMV降低。然后可以考虑将这些方法用于不同类型的驱动器(带或不带隔离变压器),以降低绝缘应力或限制共模电路中的谐振。给出了三种零状态向量选择方法的详细信息。提供仿真结果和实验结果以验证其有效性。

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