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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Model Predictive Control for Single-Phase NPC Converters Based on Optimal Switching Sequences
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Model Predictive Control for Single-Phase NPC Converters Based on Optimal Switching Sequences

机译:基于最优开关序列的单相NPC变换器的模型预测控制

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摘要

In this paper, a model predictive control (MPC) based on optimal switching sequences (OSSs) for a single-phase grid-connected full-bridge neutral-point-clampled (NPC) power converter is presented. The predictive control algorithm is formulated in terms of OSSs, which was originally proposed to govern three-phase power converters. In this paper, the OSS concept is extended to control single-phase power converters. The proposed MPC algorithm belongs to the continuous control set MPC and is able to provide fixed switching frequency while handling system constraints. The proposed algorithm has been experimentally tested in an NPC power converter prototype. Experimental results show the desired fixed switching behavior in the steady-state condition and the intrinsic fast dynamic provided by MPC during transients. Furthermore, the test outcomes demonstrate the robustness of the proposed controller under large system parameter deviations.
机译:本文提出了一种基于最优切换序列(OSS)的模型预测控制(MPC),用于单相并网全桥中点电容器(NPC)功率变换器。预测控制算法是根据OSS来制定的,该算法最初是为控制三相功率转换器而提出的。本文将OSS概念扩展到控制单相功率转换器。提出的MPC算法属于连续控制集MPC,能够在处理系统约束的同时提供固定的开关频率。提出的算法已在NPC功率转换器原型中进行了实验测试。实验结果表明,稳态条件下所需的固定开关行为以及瞬态过程中MPC提供的固有快速动态特性。此外,测试结果证明了所提出的控制器在较大系统参数偏差下的鲁棒性。

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