An Inductance Tracking Based Sensorless Method for Detecting the Rotor Position of Switched Reluctance Motor

M. Moussa
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引用次数: 0

Abstract

Switched reluctance motors are expected to be good candidates in machine drives due to their simple structure. Detection of SRM rotor position is mandatory to effectively control the motion of the motor and commutate the rotor current correctly. However, the detection of the rotor position is done by either adding extra sensors or complicated mathematical calculations that need powerful computers that afford the huge calculation burden. In spite of many methods proposed to eliminate the rotor position sensor, which is needed to commutate the current correctly, research effort is still needed to improve the machine performance. This paper presents a sensorless method for the detection of rotor position method. The proposed method is based on measuring the current of some unexcited rotor phases. This is translated into better reliability due to the reduced number of measuring devices. Moreover, the proposed technique is independent of motor parameters and at the same time it is formed from simple calculations which renders its application to wide range of SRM achieving a more compact and cost-effective drive. The performance of the proposed technique is assessed by means of offline simulations as well as experimental prototypes. The simulation as well as experimental results proves the accuracy of the proposed detection technique.
基于电感跟踪的开关磁阻电机转子位置无传感器检测方法
开关磁阻电动机由于结构简单,有望成为机械传动的良好候选者。SRM转子位置检测是有效控制电机运动和正确换流转子电流的必要条件。然而,转子位置的检测是通过增加额外的传感器或复杂的数学计算来完成的,这需要强大的计算机来承担巨大的计算负担。尽管提出了许多方法来消除正确换流所需的转子位置传感器,但仍需要进行研究以提高机器的性能。提出了一种无传感器转子位置检测方法。所提出的方法是基于测量一些未激励转子相位的电流。由于减少了测量设备的数量,这转化为更好的可靠性。此外,所提出的技术不受电机参数的影响,同时它由简单的计算形成,使其适用于大范围的SRM,实现更紧凑和更经济的驱动。通过离线仿真和实验样机对所提技术的性能进行了评估。仿真和实验结果证明了该检测方法的准确性。
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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