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A modified four-step commutation to suppress common-mode voltage during commutations in open-end winding matrix converter drives

机译:改进的四步换向以抑制开放式绕组矩阵转换器驱动器换相期间的共模电压

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Open-end winding matrix converter drives provide a higher voltage transfer ratio and better output voltage quality with more voltage levels in the output voltage, compared to single matrix converter drives. Pulse Width Modulation (PWM) techniques have been developed for open-end winding drives to suppress switching common-mode voltage at load terminals. The switching of bi-directional switches in this converter requires a step by step control of individual IGBTs, known as four-step commutation. However, commutation can cause glitches in common-mode voltage, leading to circulating currents in the open-end winding load. These currents result in additional losses in the load. This paper presents an analysis of the common-mode voltage glitches during commutation process. A modified four-step commutation scheme is then presented that reduces these glitches, thus suppressing circulating currents in the load. Simulation and experimental results have been presented to verify the reduction in circulating currents when using the proposed modified four-step commutation technique.
机译:与单矩阵转换器驱动器相比,开放式绕组矩阵转换器驱动器提供更高的电压传输比和更好的输出电压质量,并且输出电压中的电压电平更高。脉冲宽度调制(PWM)技术已开发用于开放式绕组驱动器,以抑制负载端子上的开关共模电压。此转换器中双向开关的切换需要单个IGBT的逐步控制,即四步换向。但是,换向会导致共模电压出现毛刺,从而导致开放式绕组负载中的循环电流。这些电流导致负载的额外损耗。本文对换相过程中的共模电压毛刺进行了分析。然后提出了一种改进的四步换向方案,该方案减少了这些毛刺,从而抑制了负载中的循环电流。提出了仿真和实验结果,以验证使用所提出的改进的四步换向技术时循环电流的减小。

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