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A novel hybrid seven-level converter for permanent magnet synchronous motor driving system based on model predictive control

机译:基于模型预测控制的永磁同步电动机驱动系统新型混合七级转换器

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摘要

A novel hybrid three-phase seven-level converter is proposed in the paper. Each phase consists of a four-level bridge and a two-level H bridge, which contains ten switching devices and a floating capacitor. The circuit structure is introduced and working principle of the converter containing 14 commutation paths is analyzed, which is easy to control the floating capacitor voltage. In order to drive permanent magnet synchronous motor (PMSM) with the proposed converter, model predictive control (MPC) strategy is adopted. The control objectives such as controlling the currents of PMSM and capacitor voltages balancing are included in a cost function with two weight factors, which can control the currents of PMSM and balance the capacitor voltages simultaneously. To validate the proposed control scheme, simulations in two cases are carried out by using Matlab/Simulink software. Finally, the feasibility and efficiency in two cases are verified with the experimental test bench based on RT_LAB.
机译:本文提出了一种新型混合三相七级转换器。每个阶段由四级桥梁和两级H桥组成,其中包含十个开关装置和浮动电容。介绍电路结构,分析了包含14个换向路径的转换器的工作原理,易于控制浮动电容电压。为了使永磁同步电动机(PMSM)与所提出的转换器,采用模型预测控制(MPC)策略。如控制PMSM和电容电压平衡的电流的控制目标包括在具有两个权重因子的成本函数中,这可以控制PMSM的电流并同时平衡电容电压。为了验证所提出的控制方案,使用MATLAB / SIMULINK软件进行两种情况下的模拟。最后,基于RT_LAB的实验测试台验证了两种情况下的可行性和效率。

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