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High-frequency modeling, parameterization, and simulation of IPM motor drive systems

机译:IPM电机驱动系统的高频建模,参数化和仿真

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Interior-permanent-magnet (IPM) motor drive systems are widely used in industrial applications. As power transistors are made faster, it is important to establish accurate high-frequency (HF) models of IPM motor drive systems so that transient overvoltages, electromagnetic interference (EMI), and motor/converter losses can be predicted more accurately to facilitate system design and verification. In this paper, a HF IPM motor model is proposed. A conventional qd0 IPM motor model is augmented to portray the HF transients. The motor model is parameterized using measured differential-mode (DM) and common-mode (CM) impedance characteristics. In addition, a HF cable model is proposed whose parameters can be established from DM and CM impedance measurements under short- and open-circuit conditions. An αβ0 model is used to implement the cable model in simulation. Both models can readily be implemented using circuit-based simulators, such as LTspice, so that established SPICE transistor models can be used to predict switching transients, EMI and losses.
机译:内部永磁体(IPM)电机驱动系统广泛用于工业应用中。随着电源晶体管更快,重要的是建立精确的IPM电机驱动系统的高频(HF)型号,以便更准确地预测瞬态过电压,电磁干扰(EMI)和电机/转换器损耗,以便于系统设计并验证。本文提出了一种HF IPM电机模型。传统的QD0 IPM电机模型被增强以描绘HF瞬态。电机模型使用测量的差模(DM)和共模(CM)阻抗特性进行参数化。另外,提出了一种HF电缆模型,其参数可以在短路和开路条件下从DM和CM阻抗测量建立。 αβ0模型用于实现模拟中的电缆模型。这两种模型都可以使用基于电路的模拟器(例如LTSPICE)轻松实现,因此建立的Spice晶体管模型可用于预测切换瞬态,EMI和损耗。

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