Mathematical Modeling of Permanent Magnet Brushless DC Motor for Electric Scooter

Prakhyath Shetty, A. K. Nitin Subramonium, M. Kumar
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引用次数: 4

Abstract

Permanent magnet brushless dc (PMBLDC) motors are successfully developed to find the wide application in low power automotives due to high efficiency, silent operation, compact size, lower maintenance and high reliability. Due to the advancement in power electronics, PM Brushless dc motors have become potential drive for automotive applications. This paper mainly deals on simulation using Mat lab / Simulink for mathematical model of the PMBLDC motor for electric scooter application. The steady state and transient models of PMBLDC motor is analyzed for efficient performance of control. The transfer function of the motor is derived to arrive at the stability of the motor. The communication system and network topology of the motor drive is discussed and presented.
电动滑板车用永磁无刷直流电动机数学建模
永磁无刷直流电动机具有效率高、运行安静、体积小、维护成本低、可靠性高等优点,在小功率汽车上得到了广泛的应用。由于电力电子技术的进步,永磁无刷直流电机已成为汽车应用的潜在驱动器。本文主要研究了利用Mat lab / Simulink对电动滑板车用PMBLDC电机的数学模型进行仿真。分析了永磁无刷直流电动机的稳态和暂态模型,以提高其控制性能。推导了电机的传递函数,得到了电机的稳定性。讨论并给出了电机驱动的通信系统和网络拓扑结构。
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