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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Three-Vector-Based Model Predictive Current Control With Zero-Sequence Current Suppression for Open-Winding LPMVM Drives
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Three-Vector-Based Model Predictive Current Control With Zero-Sequence Current Suppression for Open-Winding LPMVM Drives

机译:基于30向量的模型预测电流控制,零序电流抑制开放式LPMVM驱动器

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摘要

Because of the enhanced utilization of dc-link voltage and the low cost of power supply, common dc-link dual-inverter is a desirable drive topology to solve the low power factor problem of open-winding linear permanent-magnet vernier motor (OW-LPMVM). However, the common dc-link structure causes a zero-sequence current (ZSC) in the motor windings, which increases current distortion and thrust ripple of the LPMVM. To effectively decrease the ZSC as well as thrust ripple, this paper proposes a three-vector-based model predictive current control (TV-MPCC) scheme. In the proposed TV-MPCC, one optimal vector produced by one of the dual-inverter is obtained based on the deadbeat current control principle, which simplifies the prediction process and reduce the switching frequency. On the other hand, the other two optimal vectors produced by another of the dual-inverter are obtained by means of a cost function cascade evaluation, which improves the steady-state performance. With the proposed scheme, the ZSC is effectively suppressed with the simple implementation, enhanced thrust performance, fast transient response, good robustness against parameter variations, and reduced switching frequency compared with the existing ZSC suppression methods. Simulation and experimental results are demonstrated for confirming the proposed TV-MPCC.
机译:由于直流链路电压的利用率增强和电源的低成本,普通的DC-LINK双逆变器是一个理想的驱动拓扑,以解决开放式线性永磁游标电机的低功率因数问题(OW- LPMVM)。然而,公共的DC-LINK结构使电动机绕组中的零序电流(ZSC)增加,这增加了LPMVM的电流失真和推力纹波。为了有效地降低Zsc以及推力纹波,本文提出了一种基于三维矢量的模型预测电流控制(TV-MPCC)方案。在所提出的TV-MPCC中,基于止血电流控制原理获得了一个双逆变器产生的一个最佳矢量,这简化了预测过程并降低了开关频率。另一方面,通过成本函数级联评估获得另一个由另一个双逆变器产生的其他两个最佳矢量,这提高了稳态性能。利用所提出的方案,随着简单的实施,增强的推力性能,快速瞬态响应,对参数变化的良好鲁棒性以及与现有ZSC抑制方法相比,ZSC的有效抑制了ZSC。仿真和实验结果证实了确认提出的TV-MPCC。

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