Design Strategy and Implementation of Control Parameters for BLDC Motor Application in an Electric Vehicle

Sandipan Pine, Bibhuti Bhusan Choudhury
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Abstract

The brushless dc motor (BLDC) motor is an electric motor that is widely utilized in numerous applications, especially in automotive systems. It is significant to maximize the force of the electric vehicle; however, due to the rapid growth of electric vehicles, motors and power electronics are determined with huge concern. Meanwhile, the Proportional Integral Derivative (PID) cannot balance the load in a stable condition, and this variation generates a change in load and track conditions. In mobile robot the BLDC motor diminished the current and it increased the torque voltage and current by 48V and 50A, respectively. So to overcome these issues, the control algorithm is implemented in this paper to regulate the speed of the motor in 1KW BLDC in an Electric Vehicle (EV). A 1500rpm BLDC motor is designed by Dymola software which is evaluated with MATLAB. The BLDC increases the torque speed characteristics of the motor based on the pole configuration of an electric vehicle. Evaluation of the method is determined with a set of STM 31 ARM processors and a 750 watt driver. The experimentation is simulated using Arduino IDE software and the results revealed that it is applicable for STM 32 or teensy 3.2 development board or Arduino Mega development board.
电动汽车无刷直流电机应用控制参数的设计策略与实施
无刷直流电机(BLDC)是一种广泛应用于众多领域的电机,尤其是在汽车系统中。它对于最大限度地提高电动汽车的动力具有重要意义;然而,由于电动汽车的快速发展,电机和电力电子器件的决定因素受到了极大的关注。同时,比例积分微分(PID)无法在稳定状态下平衡负载,这种变化会导致负载和轨道条件发生变化。在移动机器人中,无刷直流电机减小了电流,并使转矩电压和电流分别增加了 48V 和 50A。因此,为了克服这些问题,本文采用控制算法来调节电动汽车(EV)中 1KW BLDC 电机的速度。使用 Dymola 软件设计了转速为 1500rpm 的无刷直流电机,并使用 MATLAB 对其进行了评估。无刷直流电机根据电动汽车的磁极配置提高了电机的扭矩速度特性。评估方法由一组 STM 31 ARM 处理器和一个 750 瓦驱动器决定。实验使用 Arduino IDE 软件进行模拟,结果表明它适用于 STM 32 或 teensy 3.2 开发板或 Arduino Mega 开发板。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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