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Predictive Direct Torque Control for Switched Reluctance Motor Drive System

机译:开关磁阻电机驱动系统的预测直接转矩控制

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In order to minimize the torque ripple of SRM, a predictive direct torque control (PDTC) method is proposed in this paper. Firstly, a discrete predictive model is established by the accurate measurement the static electromagnetic characteristics of SRM. The future value of output torque of the SRM is predicted using this predictive model. Secondly, the torque sharing function is used to share the total torque reference to each phase. Then, the cost function of each phase is designed to simultaneously minimize the torque ripple and reduce switching frequency. Further, the optimal switching state of the minimum predefined cost function is selected to be output to the phase power converter. Compared with the conventional direct torque control method, the proposed PDTC method does not need to formulate complex hysteresis control rules, and can effectively suppress torque ripples. Finally, the validity of proposed control scheme is verified by the simulation results of a three-phase 12/8 pole SRM.
机译:为了最小化SRM的转矩脉动,本文提出了一种预测性直接转矩控制(PDTC)方法。首先,通过对SRM的静态电磁特性进行精确测量,建立了离散预测模型。使用此预测模型可以预测SRM的输出扭矩的未来值。其次,扭矩共享功能用于共享每个相位的总扭矩参考。然后,设计各相的成本函数,以同时最小化转矩波动并降低开关频率。此外,选择最小预定成本函数的最佳开关状态以输出到相功率转换器。与传统的直接转矩控制方法相比,本文提出的PDTC方法无需制定复杂的磁滞控制规则,可以有效地抑制转矩脉动。最后,通过三相12/8极SRM的仿真结果验证了所提出控制方案的有效性。

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