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Rotor position and speed estimation for a synchronous reluctance motor drive using dual current-slope technique

机译:利用双电流斜率技术估算同步磁阻电动机驱动器的转子位置和速度

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This paper proposes a dual current-slope rotor position estimation and its relative sensorless closed-loop drive system for synchronous reluctance motors. First, the mathematical model of the synchronous reluctance motor is discussed. Then, a new rotor position/speed estimator of the synchronous reluctance motor is proposed. The proposed method uses dual current-slope to estimate the rotor position and rotor speed for a synchronous reluctance motor. In addition, the estimator can easily be realized and is unrelated to the motor parameters. The estimating technique does not require any extra hardware circuit when compared to the traditional drive system. A TMS-320F-28335 digital signal processor is used to execute the rotor position/speed estimation, the position or speed control algorithms, the d-q to a-b-c coordinate transformation, and the PWM switching strategy. The hardware circuit, therefore, is very simple. Several experimental results are provided to validate the theoretical analysis.
机译:本文提出了一种用于同步磁阻电动机的双电流斜率转子位置估计及其相对的无传感器闭环驱动系统。首先,讨论了同步磁阻电动机的数学模型。然后,提出了一种新的同步磁阻电动机的转子位置/速度估计器。所提出的方法使用双电流斜率来估计同步磁阻电动机的转子位置和转子速度。另外,估计器可以容易地实现并且与电动机参数无关。与传统驱动系统相比,估算技术不需要任何额外的硬件电路。 TMS-320F-28335数字信号处理器用于执行转子位置/速度估计,位置或速度控制算法,d-q到a-b-c坐标转换以及PWM切换策略。因此,硬件电路非常简单。提供了一些实验结果以验证理论分析。

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