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Cascaded Finite Control-Set Model Predictive Control for the Dual Inverter Fed Open-End Winding Induction Motor with Four-level Inversion

机译:具有四级反转的双逆变器的双变频器级联有限控制设定模型预测控制

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A new strategy for employing the finite control-set model predictive control (FCS-MPC) to the dual inerter fed open-end winding induction motor is presented in this paper. Effective switching states for attaining a four-level inversion in this structure are 37 vectors. Using this large number of switching states in the predictive control, demands high computational burden. In the suggested method, the voltage vectors are selected in a cascaded form. Therefore, calculations of the predictive control need to be done only 13 times, which require about 65 percent less computational burden. It has to be noted that in this strategy, all the effective switching states can be selected. Moreover, the active redundant states are used automatically. A comparison is made between the proposed strategy and the conventional voltage vector selection method in the both predictive torque and current control schemes. The usefulness of the innovative cascaded FCS-MPC strategy is examined and validated through the simulations.
机译:本文介绍了采用有限控制设定模型预测控制(FCS-MPC)的新策略。本文提出了一种进料开口绕组绕组感应电动机。用于在该结构中获得四级反转的有效切换状态是37个载体。在预测控制中使用这一大量交换状态,要求高计算负担。在建议的方法中,以级联形式选择电压矢量。因此,预测控制的计算只需要完成13次,这需要约65%的计算负担。必须注意,在这种策略中,可以选择所有有效的交换状态。此外,自动使用活动冗余状态。在两个预测扭矩和电流控制方案中的所提出的策略和传统电压矢量选择方法之间进行了比较。通过模拟检查和验证了创新的级联FCS-MPC策略的有用性。

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