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Finite-Control-Set Model Predictive Direct Torque Control of PMSMs with Virtual Space Vectors

机译:具有虚拟空间向量PMSMS的有限控制设施模型预测直扭矩控制

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The finite-control-set model predictive direct torque control (FCS-MPDTC) is a novel control scheme. A key feature of FCS-MPDTC is that the possible voltage space vectors of the power converters are taken into account as the control input of the drive system. A cost function is used in FCS-MPDTC to evaluate each possible voltage space vector and the one with minimum cost is selected. Due to the noticeable torque and flux ripples of FCS-MPDTC, a novel FCS-MPDTC with virtual voltage space vectors is proposed in this paper. To mitigate the computational burden caused by increased voltage space vectors, a pre-selective scheme is designed to filter out the impractical voltage vectors instead of evaluating all twenty voltage space vectors.
机译:有限控制设定模型预测直接转矩控制(FCS-MPDTC)是一种新型控制方案。 FCS-MPDTC的一个关键特征是,电源转换器的可能电压空间向量被考虑为驱动系统的控制输入。 FCS-MPDTC中使用成本函数以评估每个可能的电压空间向量,选择最小成本的电压空间矢量。由于FCS-MPDTC的明显扭矩和磁通波纹,本文提出了一种具有虚拟电压空间矢量的新型FCS-MPDTC。为了缓解由增加电压空间矢量引起的计算负担,设计预选方案被设计为滤除不切实际的电压矢量,而不是评估所有20个电压空间矢量。

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