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A Finite Set Model Predictive Current Control for Three-Level NPC Inverter with Reducing Switching State Combination

机译:降低开关状态组合的三电平NPC逆变器有限集模型预测电流控制

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Model Predictive Control (MPC) has been proved to be a powerful control algorithm in power electronics converters. However, it requires a large number of calculations which needs higher computational resources and faster control rate in comparison with the traditional control techniques such as Proportional Integral (PI). In this paper, a new finite - control – set model-predictive control (FCS-MPC) method for three-level neutral-point-clamped (3L-NPC) converter is presented. The proposed control scheme takes advantages of significantly mitigating computation burden thank to the reduction of switching state space vector combination. The proposed control method is theoretically analyzed and simulated using MATLAB/Simulink with fixed-step 10µs sampling time. The simulation results demonstrate the advantages of the proposed control algorithms with fast response and lower switching states, especially at low modulation index while maintaining all the advantages of MPC such as multiple objectives control, small steady state error and achieving high power quality of the converter.
机译:模型预测控制(MPC)已被证明是电力电子转换器中强大的控制算法。但是,与诸如比例积分(PI)之类的传统控制技术相比,它需要大量计算,这需要更高的计算资源和更快的控制速率。本文提出了一种用于三电平中性点钳位(3L-NPC)转换器的有限控制-集模型预测控制(FCS-MPC)方法。由于减少了开关状态空间矢量组合,因此所提出的控制方案具有显着减轻计算负担的优点。从理论上分析了所提出的控制方法,并使用MATLAB / Simulink以固定步长10μs的采样时间对其进行了仿真。仿真结果证明了所提出的控制算法具有快速响应和较低开关状态的优点,特别是在低调制指数下,同时保持了MPC的所有优点,如多目标控制,较小的稳态误差和实现转换器的高电能质量。

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