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Influence of Relative Humidity on the Temperature Increase of a Power Converter

机译:相对湿度对功率转换器温升的影响

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摘要

As a vital part of renewable energy and electrical traction, power converters are supposed to have high reliability and good performance. However, power semiconductors produce considerable heat when the power converter works, which results in high junction temperatures that lower the reliability and performance of the power semiconductors. Many studies show that ambient humidity has a significant effect on power devices, but the influence of high humidity on junction temperatures has yet to be studied. Therefore, this paper presents a thermal model for power converters in moist air to obtain the junction temperature increase, which is utilized for the power converter used in a Switched Reluctance Motor System. Simulation results show that the law of converter temperature distribution is independent of the relative humidity in the case of fixed ambient temperature, whereas the temperature in the power converter decreases as the ambient relative humidity increases. These simulation results are validated with the experimental results
机译:作为可再生能源和电力牵引的重要组成部分,功率转换器应该具有很高的可靠性和良好的性能。但是,当功率转换器工作时,功率半导体会产生大量热量,这会导致较高的结温,从而降低功率半导体的可靠性和性能。许多研究表明,环境湿度对功率器件有显着影响,但高湿度对结温的影响尚待研究。因此,本文提出了一种用于潮湿空气中的功率转换器的热模型,以获得结温的升高,该模型用于开关磁阻电机系统中的功率转换器。仿真结果表明,在环境温度固定的情况下,转换器的温度分布规律与相对湿度无关,而功率转换器中的温度随环境相对湿度的增加而降低。这些仿真结果已通过实验结果验证

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