Sensorless control of switched reluctance motor based on a simple flux linkage model

Jiayi Fan, Master’s Degree Yongkeun, Lee
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引用次数: 1

Abstract

Introduction. The operation of switched reluctance motor requires prior knowledge of the rotor position, obtaining from either low resolution photocoupler based position sensor or high resolution shaft encoder, to control the on/off states of the power switches. Problem. However, using physical position sensor in harsh environment will inevitably reduce the reliability of the motor drive, in which sensorless control comes into play. Novelty. In this paper, a sensorless control scheme of switched reluctance motor is proposed. Methodology. The method is based on a simple analytical model of the flux-linkage curves rather than the conventional approach that normally uses a look-up table to store all the data points of the flux-linkage curves. By measuring the phase current, rotor position can be deduced from the analytical model. Practical value. Simulation results are given and the proposed sensorless scheme is verified to provide a moderate position estimation accuracy in a wide speed range in both unsaturated and saturated conditions.
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基于简单磁链模型的开关磁阻电机无传感器控制
介绍。开关磁阻电机的操作需要事先了解转子位置,从基于低分辨率光电耦合器的位置传感器或高分辨率轴编码器获得,以控制电源开关的开/关状态。问题。然而,在恶劣的环境中使用物理位置传感器必然会降低电机驱动的可靠性,这就需要无传感器控制。新鲜事物。本文提出了一种开关磁阻电机的无传感器控制方案。方法。该方法基于简单的通量-连杆曲线解析模型,而不是传统的使用查找表来存储通量-连杆曲线的所有数据点的方法。通过测量相电流,可以由解析模型推导出转子位置。实用价值。给出了仿真结果,并验证了所提出的无传感器方案在非饱和和饱和条件下都能在较宽的速度范围内提供中等的位置估计精度。
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