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Position Sensorless Control of Switched Reluctance Motor with Consideration of Magnetic Saturation Based on Phase-Inductance Intersection Points Information

机译:基于相电感交点信息的磁饱和开关磁阻电机无位置传感器控制

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The precise estimation of position is an essential concern for the control of a switched reluctance motor (SRM). Given the prominent role of position, the promising sensorless control approach for an SRM drive should be capable of providing accurate position. An inductance-based approach has been widely applied in the position estimation. However, the estimated accuracy suffers from the magnetic saturation effect, resulting in the poor performance of sensorless operation. This paper presents a reversible synchronization of commutation with the corresponding rotor position for SRM. With the consideration of magnetic saturation, the proposed approach is taken as a suitable candidate and plays an essential role in accommodating the requirement of optimal control. The relationship between a typical inductance position and magnetic circuit saturation is investigated. The instant of the intersections is sensed by comparing the instantaneous inductance of adjacent phases. Thus, the predicted position is obtained with the information of the special point and the calculated average speed. Compared with other existing methods, the proposed approach has the certain advantages, such as the ability to update the estimated speed and position six times per electrical period, which guarantees the estimated accuracy. The proposed approach is also valid even when the motor is operated at an acceleration state and heavy load operation. In addition, the requirement of the educated inductance structure is not unnecessary, less memory space is needed in the chip, and the accumulated error is eliminated. The simulation and experimental findings demonstrate the feasibility and practicality of the proposed position estimation approach with carrying out the inertial operation, load mutation, and high-speed test.
机译:位置的精确估计是控制开关磁阻电机(SRM)的基本要点。考虑到位置的突出作用,有希望的SRM驱动器无传感器控制方法应能够提供准确的位置。基于电感的方法已广泛应用于位置估计。但是,估计的精度受到磁饱和效应的影响,导致无传感器操作的性能较差。本文提出了SRM换向与相应转子位置的可逆同步。考虑到磁饱和,所提出的方法被认为是合适的候选方法,并且在满足最优控制要求方面起着至关重要的作用。研究了典型电感位置与磁路饱和之间的关系。通过比较相邻相的瞬时电感来感测相交的时刻。因此,利用特殊点的信息和计算出的平均速度来获得预测位置。与其他现有方法相比,该方法具有一定优势,例如每个电气周期可以更新估计的速度和位置六次,从而保证了估计的准确性。所提出的方法即使在电动机以加速状态和重负荷运行的情况下也是有效的。另外,不需要感性的电感结构,芯片中需要的存储空间更少,并且消除了累积的误差。仿真和实验结果证明了所提出的位置估计方法进行惯性操作,载荷突变和高速测试的可行性和实用性。

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