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Study on thermal characteristics of RF coaxial switch based on finite element method

机译:基于有限元方法的射频同轴开关热特性研究

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RF (Radio Frequency) coaxial switches have the advantages of high transmission frequency and high power capacity, and are widely used in aerospace, communications, military, science and medical fields. In this paper, a three-dimensional finite element model of a RF coaxial switch was first proposed. The power loss in the contact system when the switch transmits high frequency and power signals was divided into the conductor loss and the dielectric loss which were calculated separately. It was noted that conductor loss was the main part of power loss. Then, the power loss in the contact system was considered as the heat source and the steady state temperature field of the whole switch was calculated with Ansoft HFSS and Workbench. The temperature rise in a RF coaxial switch was calculated and verified by experimental testing. Finally, the influence of transmission power was examined and it was concluded that the RF performance would downgrade with increasing transmission power and steady state temperature because of the thermal deformation occurring in the contact system caused by the heat stress. The analysis methods and conclusions presented in this study have important theoretical significance and practical value for improving the performance and reliability of RF coaxial switch products.
机译:RF(射频)同轴开关具有传输频率高和功率容量大的优点,并且广泛用于航空航天,通信,军事,科学和医学领域。本文首先提出了一种射频同轴开关的三维有限元模型。开关传输高频信号和功率信号时,触点系统的功率损耗分为导体损耗和介电损耗,这是分别计算的。据指出,导体损耗是功率损耗的主要部分。然后,将接触系统中的功率损耗视为热源,并使用Ansoft HFSS和Workbench计算整个开关的稳态温度场。 RF同轴开关中的温升已通过实验测试进行了计算和验证。最后,研究了传输功率的影响,并得出结论,由于热应力引起的接触系统中的热变形,射频性能会随着传输功率和稳态温度的升高而降低。本研究提出的分析方法和结论对提高射频同轴开关产品的性能和可靠性具有重要的理论意义和实用价值。

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