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Online Sensorless Position Estimation for Switched Reluctance Motors Using One Current Sensor

机译:使用一个电流传感器的开关磁阻电机在线无传感器位置估计

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摘要

This paper proposes an online sensorless rotor position estimation technique for switched reluctance motors (SRMs) using just one current sensor. It is achieved by first decoupling the excitation current from the bus current. Two phase-shifted pulse width modulation signals are injected into the relevant lower transistors in the asymmetrical half-bridge converter for short intervals during each current fundamental cycle. Analog-to-digital converters are triggered in the pause middles of the dual pulse to separate the bus current for excitation current recognition. Next, the rotor position is estimated from the excitation current, by a current-rise-time method in the current-chopping-control mode in a low-speed operation and a current-gradient method in the voltage-pulse-control mode in a high-speed operation. The proposed scheme requires only a bus current sensor and a minor change to the converter circuit, without a need for individual phase current sensors or additional detection devices, achieving a more compact and cost-effective drive. The performance of the sensorless SRM drive is fully investigated. The simulation and experiments on a 750-W three-phase 12/8-pole SRM are carried out to verify the effectiveness of the proposed scheme.
机译:本文提出了一种仅使用一个电流传感器的开关磁阻电机(SRM)在线无传感器转子位置估计技术。这是通过首先将励磁电流与母线电流去耦来实现的。在每个电流基本周期内,将两个相移的脉宽调制信号以较短的间隔注入到不对称半桥转换器的相关下部晶体管中。在双脉冲的暂停中间触发模数转换器,以分离总线电流以识别励磁电流。接下来,通过励磁电流,通过低速运转时的电流斩波控制模式下的电流上升时间方式,以及运转时的电压脉冲控制模式下的电流梯度方式,从转子电流推定转子位置。高速运转。所提出的方案仅需要总线电流传感器并且对转换器电路进行较小的改变,而不需要单独的相电流传感器或附加的检测装置,从而实现了更加紧凑和经济高效的驱动。对无传感器SRM驱动器的性能进行了全面研究。在750W三相12/8极SRM上进行了仿真和实验,以验证所提方案的有效性。

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