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Reliability Evaluation for Power Converter of SRM on Fault-Tolerance Capability and Thermal Stress

机译:用于容错能力和热应力的SRM功率转换器可靠性评估

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摘要

In this article, a novel reliability evaluation scheme to achieve quantitative reliability calculation for power converter in the whole operation region of switched reluctance motor system is proposed. First, the electrical model is built to obtain electrical stress and fault-tolerance capability in the Matlab/Simulink environment. Second, the thermal circuit model is performed to get the thermal stress of power converter quickly. Third, the dynamical Markov model with a novel failure criterion is applied to achieve quantitative reliability calculation by characterizing the fault-tolerance capability and thermal stress. The proposed failure criterion can simplify the model to decrease the number of states and avoid the divergence of results, especially the interconnected relationship between the three models is key emphasized. Next, the proposed reliability evaluation scheme is carried out to explore the reliability of power converter under different chopping modes. Finally, simulations in conjunction with experiment verify the validity of the proposed reliability evaluation scheme.
机译:在本文中,提出了一种新颖的可靠性评估方案,以实现开关磁阻电动机系统的整个操作区域中的功率转换器的定量可靠性计算。首先,建立电模型,以获得MATLAB / Simulink环境中的电力应力和容错能力。其次,执行热电路模型以快速获取功率转换器的热应力。第三,应用具有新型故障标准的动态马尔可夫模型来实现通过特征容错能力和热应力来实现定量可靠性计算。所提出的故障标准可以简化模型来减少状态的数量,避免结果的分歧,特别是三个模型之间的互连关系是强调的。接下来,进行所提出的可靠性评估方案,以探讨不同斩波模式下功率转换器的可靠性。最后,与实验结合模拟验证了所提出的可靠性评估方案的有效性。

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