Control methods for a brushless DC motor drive with a new converter topology

Ahmed Shehada, R. Krishnan
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引用次数: 2

Abstract

This paper presents a control strategy for a brushless DC motor (BLDCM) drive with a new converter topology. The new topology is based on the conventional voltage-fed inverter, but includes an additional source such as a capacitor or a battery, and requires connection to the BLDCM neutral. The objective of the proposed control strategy is to control the otherwise unregulated voltage across the additional source, while maintaining commanded speed or torque. Three variations of the control strategy are presented. A detailed simulation model is used to evaluate the performance of the considered converter with proposed control strategy, and compare it to a conventional voltage-fed inverter BLDCM drive. Performance measures include torque per unit current, copper losses per unit current, inverter losses, and efficiency. It is also shown that exact torque and speed control can be exercised at up to twice the rated speed. Simulation results for operation at twice the rated speed with the torque controlled to half the rated value are provided to demonstrate that. This is a major advantage over the conventional BLDCM drive, where speed and torque are usually uncontrolled above rated speed. In addition, the drive is shown to deliver rated power (at rated speed) with only half the dc link voltage.
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一种新型变换器拓扑的无刷直流电机驱动控制方法
本文提出了一种基于新型变换器拓扑结构的无刷直流电动机驱动控制策略。新的拓扑是基于传统的电压馈电逆变器,但包括一个额外的电源,如电容器或电池,并需要连接到无刷直流电动机中性点。所提出的控制策略的目标是在保持命令的速度或转矩的同时,控制附加源上的不稳定电压。提出了三种不同的控制策略。采用详细的仿真模型对所提出控制策略的变换器进行了性能评估,并将其与传统电压馈电逆变器BLDCM驱动进行了比较。性能指标包括单位电流转矩、单位电流铜损耗、逆变器损耗和效率。它还表明,精确的扭矩和速度控制可以行使在高达两倍的额定速度。给出了两倍额定转速下转矩控制为额定转速一半的仿真结果。这是传统的BLDCM驱动器的主要优势,其中速度和扭矩通常在额定速度以上不受控制。此外,驱动器显示提供额定功率(在额定速度下),只有直流链路电压的一半。
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