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Effects of parasitics on the control of voltage source inverters

机译:寄生效应对电压源逆变器控制的影响

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Advancements in AC industrial drives have been propelled through improvements in power electronics and control hardware. Improvements in insulated gate bipolar transistors (IGBTs) allowed faster switching speeds, which provides lower thermal losses. Digital signal processors and improved control algorithms allow AC drives to address applications previously handled by DC drives. Capacitive coupling between the IGBT, power structure, and control platform components influence drive dynamics and contributes to signal and waveform distortion. This differential and common mode capacitance is often disregarded as "parasitics" and not considered in designing the control. This paper decouples the major contributors to motor waveform distortion, analyzes them, quantifies them, and presents a correction strategy. Simulations validate the analysis and experimental results demonstrate the strategy's benefits.
机译:交流工业驱动器的进步已经通过改进电力电子和控制硬件而得到了推动。绝缘栅双极型晶体管(IGBT)的改进允许更快的开关速度,从而降低了热损耗。数字信号处理器和改进的控制算法使交流驱动器可以处理以前由直流驱动器处理的应用。 IGBT,功率结构和控制平台组件之间的电容耦合会影响驱动动力学,并导致信号和波形失真。该差分和共模电容通常被视为“寄生”,在设计控件时并未考虑。本文将导致电机波形失真的主要因素解耦,对其进行分析,量化并提出一种校正策略。仿真验证了分析结果,实验结果证明了该策略的好处。

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