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Cell-by-Cell-Based Finite-Control-Set Model Predictive Control for a Single-Phase Cascaded H-Bridge Rectifier

机译:单相级联H桥整流器的基于单元的有限控制集模型预测控制

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The traditional finite-control-set model predictive control (FCS-MPC) method for a cascaded H-bridge (CHB) rectifier has two main issues: heavy computational burden and low steady-state current performance. In this paper, a novel FCS-MPC method has been proposed for a single-phase CHB rectifier. The proposed method solves the optimization problem of FCS-MPC for one cell by one cell, like a “pipeline.” In the proposed method, the sampling period is divided into equal intervals by the number of cells. At the beginning of the first interval, the first cell selects its switching state to be applied. Then, the following cell selects its switching state to be applied at the beginning of next interval. Finally, the selected switching state of last cell will be applied at the beginning of the last interval. A cost function presenting the control objectives of common source current error and itself dc-link voltage error is evaluated for each cell. A single-phase three-cell CHB rectifier controlled by a DSpace DS1104 is tested and the experimental results show that a significant reduction in computational time, an improved steady-state current performance, and a comparable dynamic response are achieved in the proposed method in comparison with the traditional FCS-MPC method.
机译:用于级联H桥(CHB)整流器的传统有限控制集模型预测控制(FCS-MPC)方法存在两个主要问题:繁重的计算负担和低稳态电流性能。本文针对单相CHB整流器提出了一种新颖的FCS-MPC方法。所提出的方法解决了FCS-MPC针对一个单元一单元的优化问题,例如“管道”。在所提出的方法中,采样周期被小区数目划分为相等的间隔。在第一个间隔的开始,第一个单元选择要应用的开关状态。然后,下一个单元选择在下一个间隔开始时要应用的开关状态。最后,最后一个单元的选定切换状态将在最后一个间隔的开始应用。为每个单元评估呈现共同电源电流误差及其本身的直流母线电压误差的控制目标的成本函数。测试了由DSpace DS1104控制的单相三节CHB整流器,实验结果表明,与拟议的方法相比,该方法可显着减少计算时间,改善稳态电流性能并具有可比的动态响应使用传统的FCS-MPC方法。

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