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A common sharing method for current and flux-linkage control of switched reluctance motor

机译:开关磁阻电动机电流和磁链控制的通用共享方法

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In this paper, a common sharing method for current and flux-linkage control is proposed for high performance control of the switched reluctance motor (SRM). The proposed method not only can realize the current and flux-linkage sharing between different phases of the SRM, but also can reduce the torque ripple to a very low level. With the current-sharing method (CSM), the SRM can be controlled without any model information besides the phase number of the SRM. While with the flux-linkage-sharing method (FSM), high control performance can be achieved with inner flux-linkage loop alone. Six control parameters of the common sharing method can make the method possess high adjusting freedom. The CSM and the FSM are applied to speed control of a four-phase 8/6 SRM respectively. The speed controller is composed of the proportional plus derivative (PD) controller and adaptive linear element (Adaline) with sliding mode learning algorithm (SMLA). The comparisons between the control performance of the CSM and the FSM are given. Simulation results certify that the common sharing method can be applied to the current and flux-linkage control of the SRM effectively, and the combined controller can enhance the accuracy and robustness of the speed controller. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文针对开关磁阻电机(SRM)的高性能控制,提出了一种通用的电流和磁链控制共享方法。所提出的方法不仅可以实现SRM不同相之间的电流和磁链共享,而且可以将转矩脉动减小到非常低的水平。使用电流共享方法(CSM),除了SRM的阶段号之外,无需任何模型信息即可控制SRM。使用磁链共享方法(FSM)时,仅通过内部磁链就可以实现较高的控制性能。通用共享方法的六个控制参数可使该方法具有较高的调整自由度。 CSM和FSM分别应用于四相8/6 SRM的速度控制。速度控制器由比例加微分(PD)控制器和带有滑模学习算法(SMLA)的自适应线性元件(Adaline)组成。给出了CSM和FSM的控制性能之间的比较。仿真结果表明,该通用共享方法可以有效地应用于SRM的电流和磁链控制,组合控制器可以提高速度控制器的精度和鲁棒性。 (C)2015 Elsevier B.V.保留所有权利。

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