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首页> 外文期刊>Industry Applications, IEEE Transactions on >Low Complexity Model Predictive Flux Control for Three-Level Neutral-Point Clamped Inverter-Fed Induction Motor Drives Without Weighting Factor
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Low Complexity Model Predictive Flux Control for Three-Level Neutral-Point Clamped Inverter-Fed Induction Motor Drives Without Weighting Factor

机译:用于三级中性点夹紧逆变器馈电电动机驱动的低复杂性模型预测磁通控制而无需加权因子

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摘要

Tuning of weighting factors is a very complex task in the implementation of conventional finite set predictive torque control (FS-PTC) for three-level neutral-point-clamped (3L-NPC) inverter fed IM drive. The choice of these weighting factors strongly influences the control objectives such as flux, torque, and neutral point voltage (NPV). Moreover, the computational burden is high as all 27 switching states are enumerated for the evaluation of a cost function involving multiple objectives. To reduce the complexity of the conventional FS-PTC, this article proposes a high-efficient single-vector-based predictive flux control for an IM drive fed by a 3L-NPC inverter. The proposed cascaded predictive flux and NPV control evaluates 13 vectors for outer predictive flux control and two switching states for the inner predictive NPV control. It significantly reduces the computational load as the number of enumerations is reduced by more than 50%. The nontrivial process of weighting factor calculation is no longer required. The complexity reduction and the elimination of weighting factors are achieved without sacrificing the transient and steady-state performances in terms of torque and stator flux responses, total harmonic distortion of stator currents, NPV variation, and average switching frequency, compared to the conventional method as verified by experimental results.
机译:对加权因子的调整是用于三级中性点钳位(3L-NPC)逆变器Em驱动器的传统有限套装预测扭矩控制(FS-PTC)的实现非常复杂的任务。这些加权因素的选择强烈影响控制目标,例如磁通,扭矩和中性点电压(NPV)。此外,计算负担很高,因为所有27个切换状态都被列举,用于评估涉及多个目标的成本函数。为了降低传统FS-PTC的复杂性,本文提出了一种由3L-NPC逆变器供给的IM驱动器的高效单载的预测磁通控制。所提出的级联预测通量和NPV控制评估了用于外部预测磁通量控制的13个载体,以及用于内部预测NPV控制的两个切换状态。随着枚举的数量减少超过50%,它显着降低了计算负荷。不再需要加权因子计算的非增压过程。与传统方法相比,在不牺牲扭矩和定子磁通响应,定子电流的总谐波变形,定子电流的总谐波失真,与传统方法相比,实现了复杂性和加权因子的复杂性和消除加权因子。通过实验结果验证。

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