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Robust current control technique for variable DC-link Voltage Source Inverters for Renewable Energy Systems

机译:可再生能源系统可变直流电压源逆变器的鲁棒电流控制技术

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This paper presents a model predictive strategy for a three-phase, two-level Voltage Source Inverter (VSI) and three-level Diode-Clamped Converters (DCCs) with AC filter for Renewable Energy Systems (RES) applications. The renewable energy systems model is used in this paper to investigate the system performance when power is supplied to Resistive-Inductive load (RL-load). This strategy allows for fast load current control while keeping the balance of the DC-link capacitor voltages. The robustness of control strategy under variable DC-link voltages for RES application is done in terms of the Total Harmonic Distortion (THD) and tracking behaviour of the reference currents with all DC-link voltage values. The co-simulation is carried out using MATLAB/Simulink with PSIM software to test the effectiveness and robustness of FS-MPC for two and three-level VSI with AC filter for resistive-inductive load supplied by a renewable energy system.
机译:本文为三相,双电压源逆变器(VSI)和三级二极管钳位转换器(DCCS)提供了一种用于可再生能源系统(RES)应用的AC滤波器的模型预测策略。本文采用可再生能源系统模型,以研究电源以电阻电感负载(RL-LOAD)进行系统性能。该策略允许快速负载电流控制,同时保持DC链路电容器电压的平衡。在RES应用程序的可变DC链路电压下的控制策略的鲁棒性是根据总谐波失真(THD)和与所有直流链路电压值的参考电流的跟踪行为完成的。使用MATLAB / Simulink使用PSIM软件进行共模,以测试FS-MPC的两个和三级VSI的有效性和鲁棒性,具有可再生能源系统提供的电阻电感负载的AC滤波器。

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