Design and Control of a BLDC Motor drive using Hybrid Modeling Technique and FPGA based Hysteresis Current Controller

A. Usman, B. Rajpurohit
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引用次数: 4

Abstract

This paper shall illustrate on the design and development of a BLDC motor drive using Hybrid Analytical- Numerical based modeling methods. The proposed hybrid methodology shall adopt both, Electrical Equivalent Circuit (EEC) and Numerical Method (NM) based techniques for having better accuracy with less computational time. The developed BLDC motor is operated using a Field Programmable Gate Array (FPGA) based control drive adopting Hysteresis Current Control (HCC) technique. The FPGA based PI speed controller sense the speed of the motor through Hall Effect sensors of the BLDC motor and generate reference current for the HCC. The generated reference current and the hysteresis controller response results in switching pulses for the 120-degree Voltage Source Inverter (VSI) of a motor drive. The FPGA based PI speed controller is designed effectively to withstand the changes in speed during the dynamic conditions of the motor. Therefore, the proposed controller can be used in industries to withstand the fault conditions in the drive and maintain the steady speed response of a motor under operation. The experimental investigation of a BLDC motor drive operated with the FPGA based algorithm developed on Xilinx ISE tool, is carried out for validating the outcomes obtained.
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基于混合建模技术和FPGA的迟滞电流控制器的无刷直流电机驱动器设计与控制
本文将说明使用混合解析-数值建模方法的无刷直流电机驱动器的设计和开发。所提出的混合方法应同时采用等效电路(EEC)和基于数值方法(NM)的技术,以获得更好的精度和更少的计算时间。所研制的无刷直流电动机采用现场可编程门阵列(FPGA)控制驱动器,采用磁滞电流控制技术。基于FPGA的PI速度控制器通过无刷直流电机的霍尔效应传感器检测电机的速度,并为HCC产生参考电流。产生的参考电流和迟滞控制器响应为电机驱动器的120度电压源逆变器(VSI)产生开关脉冲。基于FPGA的PI速度控制器设计有效地承受了电机动态状态下的速度变化。因此,所提出的控制器可用于工业中,以承受驱动器中的故障条件并保持电机在运行时的稳定速度响应。基于Xilinx ISE工具开发的基于FPGA的算法对无刷直流电机驱动器进行了实验研究,以验证所得结果。
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