新型简化多级并网变换器的模型预测控制

M. Sarbanzadeh, M. Hosseinzadeh, A. Salehi, M. Rivera, J. Muñoz, P. Wheeler
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引用次数: 1

摘要

为了提高效率,减少了器件的数量,从而减小了转换器的尺寸、体积和成本。预测控制具有响应快、不需要比例增益、易于实现等优点,是一种用于多电平变换器控制的先进控制策略。为了达到上述效果,本文提出了一种单相简化多级并网变换器的预测电流控制技术。所提出的简化转换器是一种用于级联多电平转换器的通用拓扑结构,与传统的多电平配置相比,它减少了元件数量并产生了高电平数。该拓扑结构与电网相连接,并采用模型预测控制技术对电网电流进行控制。将模型预测控制应用于15电平降阶变换器和31电平级联多电平变换器两种情况。最后,为了验证所提出的简化多级变换器和模型预测控制的有效性,在MATLAB/Simulink平台上对所提出的两种变换器进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Model Predictive Control for the New Reduced Multi-level Grid-Connected Converter
Reduced multi-level converters have been presented to enhance the efficiency by reducing the number of components which lead to reducing the size, volume and cost of converters. Predictive control is an advanced control strategy that is implemented for control of multi-level converters due to many advantages of fast response, no need proportional gain and easy to implement. To achieve these results, this paper proposes a predictive current control technique for a single-phase reduced multi-level grid-connected converter. The proposed reduced converter is a general topology for cascaded multilevel converters that reduce the number of components and generates high number of levels than traditional multi-level configurations. The proposed topology is connected to a grid and model predictive control technique is applied to control of the grid current. The model predictive control is used in two cases for the proposed 15-level reduced converter and proposed 31-level cascaded multi-level converter. Finally, to validate of the proposed reduced multi-level converter and proposed model predictive control the simulation results are presented under MATLAB/Simulink platform for proposed both converters.
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