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Variable switching frequency PWM strategy for inverter switching loss and system noise reduction in electric/hybrid vehicle motor drives

机译:可变开关频率PWM策略,用于电动/混合型车电机驱动器中的变频开关损耗和系统降噪

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In order to reduce the inverter switching loss and system noise of electric vehicle (EV) and hybrid electric vehicle (HEV) motor drives operating in high output torque region, while preventing over-heating and demagnetization of the electric motor, this paper proposes variable switching frequency PWM (VSFPWM) strategies based on on-line prediction of current ripple RMS value for two typical motor drive systems of EV/HEV. First, the instantaneous output current ripple of three-phase inverter with SVPWM is analyzed in the time-domain. Then the current ripple prediction based VSFPWM strategies are proposed for both traction motor drive topologies to meet the current ripple RMS value requirement. Compared with constant switching frequency PWM (CSFPWM) method, the inverter switching loss and noise reduction capabilities of the proposed VSFPWM methods are analyzed. The effectiveness of the proposed methods is verified by both simulation and experiments.
机译:为了降低电动车辆的变频开关损耗和系统噪声(EV)和混合动力电动车辆(HEV)电动机驱动,同时防止电动机的过热和退磁,本文提出了可变切换 频率PWM(VSFPWM)基于OV / HEV两个典型电机驱动系统的电流纹波RMS值的在线预测。 首先,在时域中分析三相逆变器的三相逆变器的瞬时输出电流纹波。 然后,提出了基于目前的基于纹波预测的VSFPWM策略,用于牵引电动机驱动拓扑以满足当前的纹波RMS值要求。 与恒定开关频率PWM(CSFPWM)方法相比,分析了提出的VSFPWM方法的逆变器开关损耗和降噪功能。 模拟和实验验证了所提出的方法的有效性。

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