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Encoderless Sequential Predictive Torque Control with SMO of 3L-NPC Converter-fed Induction Motor Drives for Electrical Car Applications

机译:具有3L-NPC转换器馈电电动机驱动器的MDO与电动汽车应用的切换顺序预测扭矩控制

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Finite control set predictive torque control (FCSPTC) is well-known for its fast response and good flexibility. However, drawbacks such as speed dependence and tedious tuning efforts for weighting factors lead to system failure and implementation complexity. This work proposes a revised FCSPTC method for 3L-NPC converter-fed induction motor (IM) using a sliding mode observer (SMO) to estimate the speed errors caused by the rotor shaft encoder. The novelty lies in two aspects: I. The revised SMO frees the controller from the speed signal dependence, eliminating potential accumulated errors from the speed feedback channels. II. The cost function is realized with a sequential structure, avoiding tedious tuning efforts for weighting factors design. Theoretical analysis and simulation results reveal that: the proposed control scheme performs well without weighting factors and achieves encoderless torque control at both transient and steady-state operation phases.
机译:有限控制装置可预测扭矩控制(FCSPTC)以其快速响应和良好的灵活性而闻名。然而,诸如加权因素的速度依赖性和繁琐的调整工作的缺点导致系统故障和实现复杂性。这项工作提出了一种使用滑模观察者(SMO)的3L-NPC转换器供给电动机(IM)的修订的FCSPTC方法来估计由转子轴编码器引起的速度误差。新颖性在于两个方面:I。修订的SMO从速度信号依赖中释放控制器,从而消除了速度反馈通道的潜在累积误差。 II。成本函数以顺序结构实现,避免了针对加权因素设计的繁琐调整工作。理论分析和仿真结果表明:所提出的控制方案在没有加权因子的情况下执行良好,并且在瞬态和稳态操作阶段实现了无切屑扭矩控制。

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