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Digital Implementation of Selective Harmonic Elimination Techniques in Modular Current Source Rectifiers

机译:模块化电流源整流器中选择性谐波消除技术的数字实现

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Modular current source converters (MCSCs) have been proposed as an alternative method for increasing the power range of medium voltage PWM AC drives. MCSCs are built by stacking parallel current source converters. Two advantages that make MCSCs attractive are: (a) extended current/voltage ratings beyond the device ratings and (b) simplicity in balancing the DC link current in each module. This can be accomplished using two optimized modulating patterns that have been proposed for such topologies: (a) multilevel selective harmonic elimination (MSHE) and (b) displaced selective harmonic elimination (DSHE). Both techniques are based on SHE patterns but there are slight differences in their digital implementation due to the way they generate the harmonic cancellation. Furthermore, when these techniques are used in the rectifier stage, it is reported that MSHE and DSHE do not eliminate all the unwanted harmonics due to practical issues such as changes in the modulating indexes to control the DC link currents. This work compares the operation of DSHE and MSHE when used in rectifiers of an MCSC in terms of execution time, robustness to poor sampling frequency, and quality of harmonic profiles on AC input currents under different operating conditions. Experimental results are presented to validate the theoretical considerations.
机译:已经提出了模块化电流源转换器(MCSC)作为增加中压PWM AC驱动器功率范围的替代方法。 MCSC通过堆叠并联电流源转换器而构建。使MCSC具有吸引力的两个优点是:(a)额定电流/电压范围超出了器件的额定范围;(b)平衡了每个模块中直流母线电流的简便性。这可以通过使用针对这种拓扑结构提出的两个优化的调制模式来实现:(a)多级选择性谐波消除(MSHE)和(b)位移选择性谐波消除(DSHE)。两种技术都基于SHE模式,但是由于它们产生谐波消除的方式,其数字实现方式略有不同。此外,据报道,在整流器级使用这些技术时,由于实际问题(例如控制直流母线电流的调制指标发生变化),MSHE和DSHE不能消除所有不想要的谐波。这项工作比较了在MCSC整流器中使用DSHE和MSHE时的运行时间,对不良采样频率的鲁棒性以及在不同工作条件下交流输入电流上的谐波分布的质量。实验结果被提出来验证理论上的考虑。

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