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Design and Analysis of C-Band Parabolic Antenna Materials for Synthetic Aperture Radar On-Board Microsatellite

机译:合成孔径雷达车载微卫星C波段抛物面天线材料的设计与分析

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In developing a synthetic aperture radar onboard a satellite, one component of concern is the antenna. In designing such an antenna, the selection of material types should be considered in order for the effects of expansion and shrinkage due to drastic temperature variations not to result in significant performance changes. In this study, the effect of adoption of various material types to the antenna performance was evaluated when applied to the antenna design by incorporating the changing of dimensions caused by temperature changes through the simulation. The first step involves the making of antenna design using Solidworks, where the design for the reflector is made for various types and material designs. Then a simulated temperature change is performed to find out the change in antenna design dimension to temperature changes that approximate real operating conditions onboard satellite. After that, electromagnetic field for the antenna design before and after heat-induced expansion is simulated to learn antenna performance. Comparison of performances is done to get the best type and material design. From among several designs and types of materials selected, the simulation results show that molybdenum with gold coated design produces the best performance.
机译:在研制人造卫星上的合成孔径雷达时,需要关注的一个组成部分是天线。在设计这种天线时,应考虑材料类型的选择,以使由于剧烈的温度变化而引起的膨胀和收缩的影响不会导致明显的性能变化。在这项研究中,通过模拟综合考虑了温度变化引起的尺寸变化,评估了各种材料类型对天线性能的影响,并将其应用于天线设计。第一步涉及使用Solidworks进行天线设计,其中反射器的设计适用于各种类型和材料设计。然后执行模拟的温度变化,以找出天线设计尺寸随温度变化的变化,该变化近似于卫星上的实际工作条件。之后,模拟了热诱导膨胀前后的天线设计电磁场,以了解天线性能。进行性能比较以获得最佳的类型和材料设计。从所选的几种设计和材料类型中,仿真结果表明,镀金设计的钼具有最佳性能。

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