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Improving supply current quality of dual-output four-leg Indirect Matrix Converter using model predictive control

机译:使用模型预测控制改善双输出四脚间接矩阵转换器的电源电流质量

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Finite Control Set Model Predictive (FCS-MPC) has been successfully applied to several power converter topologies and research on predictive control techniques has increased over the last few years. MPC method is an attractive to classical control methods because of its fast dynamic response and simple concept. MPC method uses the system discrete-model to calculate future values of the system variables for all possible control actions and computes a cost function related to control objectives to find its minimum. The switching action that minimizes the predefined cost function is selected to be applied for the next sampling period. This paper presents a supply current control technique for dual-output four-leg Indirect Matrix Converter (IMC) using the model predictive control approach. Two three-phase output load currents and the three-phase supply current can be controlled simultaneously by solving a single multi-objective cost function. In this work, simple predictive supply current control method is described and simulation results show that the proposed method performs quite well under steady-state and transient conditions.
机译:有限控制集模型预测(FCS-MPC)已成功应用于多种功率转换器拓扑,并且在最近几年中,对预测控制技术的研究也在不断增加。 MPC方法因其快速的动态响应和简单的概念而吸引了经典的控制方法。 MPC方法使用系统离散模型为所有可能的控制动作计算系统变量的未来值,并计算与控制目标相关的成本函数以找到其最小值。选择将预定义成本函数最小化的切换操作,将其应用于下一个采样周期。本文提出了一种使用模型预测控制方法的双输出四脚间接矩阵转换器(IMC)的电源电流控制技术。通过求解单个多目标成本函数,可以同时控制两个三相输出负载电流和三相电源电流。在这项工作中,描述了一种简单的预测电源电流控制方法,并且仿真结果表明,该方法在稳态和瞬态条件下都具有很好的性能。

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