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Modulation Techniques for Common-Mode Voltage Reduction in the Z-Source Ultra Sparse Matrix Converters

机译:Z源超稀疏矩阵转换器中共模降压的调制技术

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Common-mode voltage (CMV) is known as a major cause of premature motor failures. The form and amplitude of the CMV generated by any converter depends on both the circuit topology and modulation technique. Among single stage ac–ac converters employed in drive applications, the Z-source ultra sparse matrix converter (ZSUSMC) is a desirable choice due to reduced number of switches in its structure and voltage boosting capability. Based on these considerations, this paper aims to: 1) theoretically determine and compare the CMV of the ZSUSMC with four well-known impedance networks, namely, cascaded, switched-inductor, quasi, and series, in its structure and 2) propose modulation techniques for CMV reduction in the ZSUSMCs. To this end, first, it is shown that the ZSUSMC, depending on the impedance network used in its structure, provides more freedom to choose from redundant switching states compared to the ultra sparse matrix converter. Then, by taking advantage of this feature, novel modulation strategies that attenuate the CMV without affecting the boosting capability are developed. The proposed modulation schemes are based on avoiding the switching states most contributing to the CMV during a switching period. Through hardware-in-the-loop studies, the effectiveness of the proposed modulation strategies in reducing the CMV of the ZSUSMCs is verified.
机译:共模电压(CMV)被认为是导致电动机过早故障的主要原因。任何转换器产生的CMV的形式和幅度都取决于电路拓扑和调制技术。在驱动应用中使用的单级ac-ac转换器中,Z源超稀疏矩阵转换器(ZSUSMC)是理想的选择,因为其结构和升压能力的开关数量减少了。基于这些考虑,本文旨在:1)在理论上确定和比较ZSUSMC的CMV与其结构上的四个众所周知的阻抗网络,即级联,开关电感器,准和串联网络,以及2)提出调制ZSUSMC中降低CMV的技术。为此,首先表明,与超稀疏矩阵转换器相比,根据其结构中使用的阻抗网络,ZSUSMC提供了更多的冗余选择状态。然后,通过利用此功能,开发了在不影响增强能力的情况下衰减CMV的新型调制策略。所提出的调制方案基于避免在切换周期期间对CMV贡献最大的切换状态。通过硬件在环研究,验证了所提出的调制策略在降低ZSUSMC的CMV方面的有效性。

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