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Dynamic programming-based optimal torque control of induction machine

机译:基于动态编程的感应电机最优转矩控制

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This paper introduces a novel optimal torque control scheme based on dynamic programming for control of inverter fed induction machines. Utilizing dynamic programming method, a cost function is minimized in order to identify optimum sequence of inverter switching operations for the whole prediction horizon at every sampling instant. The proposed optimal control strategy significantly reduces the inverter switching frequency while the stator flux and electromagnetic torque follow their reference values with much less ripple. Simulation is done on accurate model of inverter fed induction machine and the results confirm the superior performance of the introduced optimal control strategy compared to direct torque control and direct self-control strategies. Furthermore, due to short calculation time needed for this method, it is applicable for online control of inverter fed induction machine. The method is a general approach which can be applied on different types of electrical drives and adapted towards different distinct applications.
机译:本文介绍了一种基于动态规划的新型最优转矩控制方案,用于变频感应电机的控制。利用动态编程方法,最小化成本函数,以便在每个采样时刻为整个预测范围确定逆变器开关操作的最佳顺序。所提出的最佳控制策略可显着降低逆变器的开关频率,而定子磁通和电磁转矩遵循其参考值且纹波要小得多。在逆变器供电感应电机的精确模型上进行了仿真,结果证实了与直接转矩控制和直接自控制策略相比,所引入的最佳控制策略的优越性能。此外,由于该方法所需的计算时间短,因此适用于变频器供电的感应电机的在线控制。该方法是一种通用方法,可以应用于不同类型的电气驱动器,并适用于不同的不同应用。

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