用集成扭矩传感器代替转子位置传感器控制BLPM机器

F. Alrifai
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引用次数: 0

摘要

无刷永磁(BLPM)电机的闭环转矩和转速控制需要转子位置信息来控制相关的电力电子逆变器。转子位置信息通过位置传感器或无位置传感器方案获取。这些位置传感器增加了BLPM驱动系统的成本和尺寸,并且由于典型转子位置传感装置的敏感性,使其容易发生机械故障。许多研究人员正在研究无位置传感器方案来解决这些问题,然而大多数无位置传感器技术在静止和低速(0-300rpm)时表现不佳;它们的性能也很差,因为它们估计负载扭矩,这在由于控制参数变化而导致的未定义负载应用中可能很困难。本文提出了一种利用集成的低成本转矩表面声转矩(SAW)传感器的测量轴转矩反馈来实现BLPM机器闭环控制的新思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control of a BLPM machine using an integrated torque sensor in place of a rotor position sensor
Closed-loop torque and speed control of the brushless permanent magnet (BLPM) machine requires rotor positional information to control the associated power electronic inverter. Rotor position information is acquired by position sensors or position sensorless schemes. These position sensors increase the cost and size of the BLPM drive systems and make it prone to mechanical failure due to the sensitive nature of typical rotor position sensing devices. Many researchers are investigating position sensorless schemes to address these points, however most position sensorless techniques behave poorly at stand-still and low speeds (0-300rpm); they also behave poorly due to the fact that they estimate load torque which can be difficult in undefined load applications due to control parameter changes. This paper proposes a novel idea to achieve closed-loop control of a BLPM machine by using measured shaft torque feedback from an integrated, low-cost, torque surface acoustic torque (SAW) transducer.
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