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A Virtual Voltage Vectors Based Model Predictive Current Control to Reduce Common-Mode Voltage for Five-Phase Voltage Source Inverters

机译:基于虚拟电压矢量的模型预测电流控制以降低五相电压源逆变器的共模电压

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The five-phase voltage source inverters (VSIs) have drawn more and more attention in the recent years, and required the extension of control schemes already well known for three-phase voltage source inverters. Nevertheless, the low-order harmonic currents suppression is a special issue of control methods for five-phase VSIs with the common-mode voltage (CMV) still remaining to be reduced. Model predictive current control (MPCC) method has been developed as a widespread and effective control technique in power electronics, especially for multiple constraints system, and has been applied to five-phase VSIs with the consideration of low-order harmonic currents suppression and CMV reduction, simultaneously. However, the complex cost function and huge computation amount in the existing works become another deficiency, and the weighting factors of different components in the cost function is difficult to adjust. In this paper, a new MPCC method based on virtual voltage vectors has been proposed for five-phase VSIs. The zero and medium voltage vectors have been eliminated and by this way the CMV can be reduced by 80%. Then, following the volt-second balance law, ten active virtual voltage vectors and active zero vectors are synthesized to acquire zero volt-second value in x-y subspace, as a consequence, low-order harmonic currents are suppressed. Finally, a simplified cost function without weighting factor is adopted. Simulation and experimental results have verified that the proposed MPCC method can reduce CMV by 80% and suppress low-order harmonic currents successfully.
机译:近年来,五相电压源逆变器(VSI)引起了越来越多的关注,并且要求扩展已经对于三相电压源逆变器众所周知的控制方案。然而,低阶谐波电流抑制是五相VSI的控制方法的一个特殊问题,而共模电压(CMV)仍有待降低。预测模型电流控制(MPCC)方法已被开发为电力电子中一种广泛有效的控制技术,尤其是对于多约束系统,并且已考虑到低阶谐波电流抑制和CMV降低的特性而应用于五相VSI。 , 同时。然而,现有工作中复杂的成本函数和巨大的计算量成为另一个不足,成本函数中不同组成部分的加权因子难以调整。本文针对五相VSI提出了一种基于虚拟电压矢量的MPCC新方法。零电压和中电压矢量已被消除,通过这种方式,CMV可以降低80%。然后,根据伏秒平衡定律,合成十个有效虚拟电压矢量和零有效矢量,以在x-y子空间中获取零伏秒值,结果,抑制了低次谐波电流。最后,采用了没有加权因子的简化成本函数。仿真和实验结果证明,所提出的MPCC方法可以将CMV降低80%,并成功抑制了低阶谐波电流。

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