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首页> 外文期刊>Industrial Electronics, IEEE Transactions on >Model Predictive-Sliding Mode Control for Three-Phase Grid-Connected Converters
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Model Predictive-Sliding Mode Control for Three-Phase Grid-Connected Converters

机译:三相并网变换器的模型预测滑模控制

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摘要

This paper focuses on the implementation of an extended model predictive-sliding mode control (EMP-SMC) for three-phase grid-connected converters (GcCs). The proposed control considers the GcC model in the dq synchronous reference frame to forecast possible future behavior of the grid current. After that, the applied voltage vector is selected so that a predefined cost function is minimized. This function is aimed to reduce the grid current ripples during steady-state operation. Compared to the conventional MPC, the proposed EMP-SMC algorithm uses 19 voltage vectors (7 real voltage vectors and 12 additional virtual voltage vectors) for the prediction process. Accordingly, lower grid current THD and lower switching losses are obtained. However, the increase of voltage vectors number will lead to higher computation time delay that may affect the control performances. To overcome this problem, the proposed control uses a sliding mode-based preselection step that limits the prediction process to only ten voltage vectors at the most and a table-based implementation process that reduces significantly the execution time of the whole control algorithm. Simulation and experimental results are presented in order to show performances and effectiveness of the proposed EMP-SMC algorithm.
机译:本文着重于针对三相并网转换器(GcC)的扩展模型预测滑模控制(EMP-SMC)的实现。所提出的控制考虑了dq同步参考系中的GcC模型来预测电网电流的未来可能行为。之后,选择施加的电压矢量,以使预定义的成本函数最小化。此功能旨在减少稳态运行期间的电网电流纹波。与传统的MPC相比,提出的EMP-SMC算法将19个电压矢量(7个实际电压矢量和12个其他虚拟电压矢量)用于预测过程。因此,获得了较低的电网电流THD和较低的开关损耗。但是,电压矢量数量的增加将导致更高的计算时间延迟,这可能会影响控制性能。为了克服这个问题,所提出的控制使用了基于滑模的预选择步骤,该步骤将预测过程最多限制为仅十个电压矢量,并且使用了基于表的实现过程,该过程显着减少了整个控制算法的执行时间。仿真和实验结果被提出以证明所提出的EMP-SMC算法的性能和有效性。

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