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Carrier-Based Implementation of SVPWM for Dual Two-Level VSI and Dual Matrix Converter With Zero Common-Mode Voltage

机译:具有零共模电压的双二电平VSI和双矩阵转换器的基于SVPWM的载波实现

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摘要

Pulse width modulation (PWM) converters generate switching common-mode voltages (CMVs) across the load terminals. These voltages cause common-mode currents, leading to bearing failure in motor loads and electromagnetic interference problems. This paper presents a generalized carrier-based PWM technique for open-end winding motor drives that completely eliminates switching CMV. The proposed method is applicable to both dual two-level voltage source inverter and dual matrix converter-based open-end winding drives. Detailed analysis shows that the carrier-based method requires significantly less computation compared to the corresponding space vector implementation. This paper also outlines the relationship between the two implementations. The carrier-based method is shown to achieve superior performance in terms of resource requirements and execution time when implemented on a field-programmable gate array-based real-time control platform. Simulation and experimental results have been presented to validate the proposed method.
机译:脉冲宽度调制(PWM)转换器在负载端子之间产生开关共模电压(CMV)。这些电压会引起共模电流,从而导致电动机负载中的轴承故障和电磁干扰问题。本文提出了一种基于载波的通用PWM技术,用于开放式绕组电动机驱动器,该技术完全消除了开关CMV。所提出的方法适用于双二电平电压源逆变器和基于双矩阵转换器的开放式绕组驱动器。详细的分析表明,与相应的空间矢量实现相比,基于载波的方法所需的计算量显着减少。本文还概述了两种实现之间的关系。当在基于现场可编程门阵列的实时控制平台上实施时,基于载波的方法在资源需求和执行时间方面显示出优异的性能。仿真和实验结果已被提出来验证该方法。

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