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Pulse width modulation technique for a three-to-five phase matrix converter with reduced commutations

机译:具有减少换向的三到五相矩阵转换器的脉冲宽度调制技术

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Variable-speed multiphase drive systems have become an increasingly important topics compared with conventional three-phase one due to their distinct advantages. This study presents a new pulse width modulation (PWM) technique for controlling the three-to-five phase matrix converter to reduce the commutation number of the power switches and the total harmonic distortion, simultaneously. The proposed PWM technique provides full output voltage and frequency control in addition to unity input power factor by changing only five switch states during the control period. Moreover, it prevents direct switching or commutation between the maximum and minimum input voltages to reduce the switches voltage stress. Moreover, the proposed PWM technique provides output voltage ratio equal to 78.86% of the input voltage. The effectiveness of the proposed control scheme has been verified theoretically by using PSIM software and experimentally by using a laboratory prototype.
机译:变速多相驱动系统由于其独特的优势而与常规的三相驱动系统相比已成为越来越重要的主题。这项研究提出了一种新的脉冲宽度调制(PWM)技术,用于控制三到五相矩阵转换器,以同时减少电源开关的换向数和总谐波失真。所提出的PWM技术通过在控制周期内仅改变五个开关状态,除了提供统一的输入功率因数外,还提供了完整的输出电压和频率控制。而且,它防止了最大输入电压和最小输入电压之间的直接切换或换向,从而降低了开关电压应力。此外,提出的PWM技术可提供等于输入电压的78.86%的输出电压比。所提出的控制方案的有效性已在理论上通过使用PSIM软件进行了验证,并在实验上通过使用了实验室原型进行了验证。

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