A Novel Concept for Energy-Optimal, Independent-Phase Control of Brushless Motor Drivers

A. Ghorbanpour, H. Richter
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引用次数: 1

Abstract

In this work, a new drive concept for brushless direct current (BLDC) motors is introduced. Energy regeneration is optimally managed with the aim of improving the energy efficiency of robot motion controls. The proposed scheme has three independent regenerative drives interconnected in a wye configuration. An augmented model of the robot, joint mechanisms, and BLDC motors is formed, and then a voltage-based control scheme is developed. The control law is obtained by specifying an outer-loop torque controller followed by minimization of power consumption via online constrained quadratic optimization. An experiment is conducted to assess the performance of the proposed concept against an off-the-shelf driver. It is shown that, in terms of energy regeneration and consumption, the developed driver has better performance. Furthermore, the proposed concept showed a reduction of 15% energy consumption for the conditions of the study.
无刷电机驱动器能量最优独立相位控制的新概念
本文介绍了一种新的无刷直流(BLDC)电机驱动概念。以提高机器人运动控制的能量效率为目标,对能量再生进行优化管理。所提出的方案有三个独立的再生驱动互连在一个方式配置。建立了机器人、关节机构和无刷直流电机的增强模型,并提出了基于电压的控制方案。通过在线约束二次优化,以最小功耗为目标,确定了控制律。进行了一个实验来评估所提出的概念对现成的驱动器的性能。结果表明,在能量再生和消耗方面,开发的驱动程序具有更好的性能。此外,提出的概念表明,在研究条件下,能源消耗减少了15%。
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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