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Thermoelastic analysis of a carbon-fiber compact antenna test range reflector

机译:碳纤维紧凑型天线测试范围反射器的热弹性分析

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Compact antenna test ranges (CATR) are attractive solutions for far-field measurements in a confined space with the single-offset reflector being the most common variation of deployed CATRs. Reflectors in these ranges emit a collimated plane-wave to simulate the far-field condition. This requires that each CATR must be properly focused and undergo careful alignment and validation, as any misalignment would perturb the plane wave. CATRs are normally designed to operate in environments with tight temperature control, however this is frequently impractical to implement in normal test environments. A carbon-fiber CATR reflector designed to be insensitive to temperature fluctuations can be an effective means to prevent thermally-induced deformation, and thus a corruption of the plane wave. This paper will illustrate the performance of this reflector over across a range of temperatures, and use a computational electromagnetic simulation to predict the impact on antenna measurements when the reflector is subjected to different temperatures.
机译:紧凑型天线测试范围(CATR)是在狭窄空间中进行远场测量的有吸引力的解决方案,其中单偏移反射器是部署的CATR的最常见变化。在这些范围内的反射器会发出准直的平面波,以模拟远场条件。这就要求每个CATR必须正确聚焦,并进行仔细的对准和验证,因为任何不对准都会干扰平面波。 CATR通常设计为在严格的温度控制环境中运行,但是在正常的测试环境中实施通常不可行。设计成对温度波动不敏感的碳纤维CATR反射器可以是防止热引起的变形从而防止平面波破坏的有效手段。本文将说明该反射器在整个温度范围内的性能,并使用计算电磁仿真来预测当反射器经受不同温度时对天线测量的影响。

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