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Thermal stress reduction of quasi-Z source inverter drive by model predictive control

机译:基于模型预测控制的准Z源逆变器驱动热应力降低

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摘要

The quasi-Z source inverter (qZSI) is one of the most promising power electronics converter topologies suitable for traction applications. The thermal stress in power modules is one of the most important causes of their failure, which is not considered during the control of qZSI drive. Thus, this paper proposes a thermal stress reduction scheme for qZSI drive, which utilizes finite control set model predictive control. The cost function is designed by including terms of switching counts, number of cycles to failure and inverter constraints in addition to the currents and capacitor voltage. This allows one to achieve the minimum thermal stress for the best possible overall performance of qZSI drive. The approach is proved using simulation and experimental results.
机译:准Z源逆变器(qZSI)是适用于牵引应用的最有前途的电力电子转换器拓扑之一。电源模块中的热应力是导致其故障的最重要原因之一,在控制qZSI驱动器时不会考虑。因此,本文提出了一种用于qZSI驱动的热应力减小方案,该方案利用了有限控制集模型的预测控制。成本函数的设计方法包括:除了电流和电容器电压外,还包括开关计数,故障循环次数和逆变器约束条件。这样可以使最小的热应力达到qZSI驱动器的最佳整体性能。仿真和实验结果证明了该方法的有效性。

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