Performance Analysis of FCS-MPC Using the Generalized Formulation and Euler Method on SBBMLI

A. Abdullah, S. M. Idrus, S. Ayob
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引用次数: 1

Abstract

This research addresses two finite control set-model predictive control (FCS-MPC) methods employed on the switched-battery boost-multilevel inverter (SBBMLI). The simulation analysis begins with the generalized formulation and follows with the Euler method of the FCS-MPC. The performance of the generalized formulation is considered at the capacitor connected in parallel with the load. Meanwhile, the Euler method is considered at the actual load of different configurations. A simulation analysis of a switched-battery boost-multilevel inverter (SBBMLI) is therefore designed and analyzed to demonstrate the efficacy of the proposed approach. The FCS-MPC control module with the two methods is implemented to confirm the performance of their operation using Matlab Simulink simulation. For the stated case study, a 0.21% to 1.25% increment of THD in the generalized SBBMLI problem formulation compared with the FCS-MPC using the Euler method and the tracking problem is an acceptable limit for the FCS-MPC performance deterioration.
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基于SBBMLI的FCS-MPC广义公式和欧拉法性能分析
研究了开关电池升压多电平逆变器(SBBMLI)的两种有限控制集模型预测控制(FCS-MPC)方法。仿真分析从FCS-MPC的广义公式开始,然后采用欧拉法进行。在电容器与负载并联时,考虑了广义公式的性能。同时,考虑了不同构型的实际荷载情况下的欧拉法。因此,设计并分析了开关电池升压多电平逆变器(SBBMLI)的仿真分析,以证明该方法的有效性。利用Matlab Simulink仿真验证了两种方法的FCS-MPC控制模块的运行性能。对于上述案例研究,与使用欧拉方法和跟踪问题的FCS-MPC相比,广义SBBMLI问题公式中的THD增量为0.21%至1.25%,这是FCS-MPC性能恶化的可接受极限。
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