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Antenna performance predictions of a radio telescope subject to thermal perturbations

机译:无线电望远镜受热扰动的天线性能预测

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Antenna performance predictions and calibration times are estimated on a 37 m diameter radio telescope subject to thermal perturbations. The telescope is designed to operate at frequencies up to 325 GHz with a one-way performance requirement of 1 dB loss in gain accounting for fabrication, alignment, gravity and thermal errors. Thermal gradients acting over the antenna structure due to diurnal air temperature variations are a significant contributor to degradations in antenna performance. Integrated thermal-structural-optical analyses were performed to predict antenna performance as a function of the diurnal variations. Based on the results, design requirements were imposed on the radome thermal control system and the rate of calibration of the hexapod mounted subreflector.
机译:估计天线性能预测和校准时间估计在经受热扰动的37米直径的无线电望远镜上。望远镜旨在以高达325GHz的频率运行,以单向性能要求为1 dB损耗,用于制造,对准,重力和热误差。由于昼夜空气温度变化,作用在天线结构上的热梯度是天线性能下降的重要因素。进行集成的热结构 - 光学分析以预测天线性能作为昼夜变化的函数。基于该结果,对天线罩热控制系统施加了设计要求及六角架安装的子裂缝的校准速率。

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