计算效率高的FCS-MPC单相五电平ANPC逆变器

I. Harbi, Mohamed Abdelrahem, Mahmoud Aref, Mostafa Ahmed, R. Kennel
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引用次数: 0

摘要

针对五电平有源中性点箝位(5L-ANPC)变换器,提出了一种高效、计算量小的模型预测控制(MPC)方法。所开发的控制算法考虑了三个控制目标;电流控制,飞行电容(FC)控制和直流链路平衡。本文提出的FCS-MPC方法利用恒差预测控制方法的概念,避免了电流预测所需的大量计算量。此外,与传统的FCS-MPC相比,每个控制样本的成本函数评估显着降低。因此,执行时间大大缩短。通过实验验证了该方法在瞬态和稳态下的有效性。并与传统的FCS-MPC方法进行了性能比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computationally Efficient FCS-MPC for Single-Phase Five-Level ANPC Inverter
An efficient model predictive control (MPC) method with a low computational load is presented in this paper for five-level active neutral point clamped (5L-ANPC) converter. Three control objectives are considered in the developed control algorithm; current control, flying capacitor (FC) control and dc-link balancing. The proposed FCS-MPC method avoids the heavy calculation load required for the current prediction by exploiting the concept of the dead-beat predictive control method. Furthermore, the cost function evaluations per control sample are significantly reduced compared to traditional FCS-MPC. As a consequence, the execution time is considerably reduced. The validation of the proposed method in transient- and steady-state is verified by the experimental implementation. The performance is compared with the conventional FCS-MPC method.
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