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Analysis of active surface reflector antenna for a large millimeterwave radio telescope

机译:大型毫米波射电望远镜的有源表面反射天线分析

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The authors analyze the effects of imperfect segment alignment on the aperture efficiency of a large millimeter telescope. A 50 meter diameter instrument of this type specified to operate to wavelengths as short as 1 mm is being designed with an actively controlled main surface. By simulating the performance of the control system, they generate samples of tilt and piston errors for the segments from which the antenna radiation patterns and aperture efficiencies are calculated. They make a comparison of these results with models of antenna tolerance theory developed by Ruze (1966), which relate the aperture efficiency to the RMS phase error. They find that Ruze's formulas have a different range of validity when the aperture RMS phase error, rather than the RMS surface error, is used as a parameter. When appreciable tilt errors are present in large segmented antennas, the aperture RMS phase error tends to a constant value, independent of the aperture illumination and of the shape of the segments. They conclude that the antenna RMS surface error is a better tracer of the aperture efficiency than is the aperture RMS phase error when Ruze's formula is used. They find that this well-known expression stands as a lower limit to the performance of large segmented reflector antennas
机译:作者分析了不完美的节段对准对大型毫米望远镜的孔径效率的影响。正在设计一种直径50米的仪器,该仪器可在短至1 mm的波长下工作,并设计有主动控制的主表面。通过模拟控制系统的性能,它们针对段的倾斜度和活塞误差生成样本,从中可以计算出天线的辐射方向图和孔径效率。他们将这些结果与Ruze(1966)开发的天线容差理论模型进行了比较,该模型将孔径效率与RMS相位误差相关联。他们发现,当将孔径RMS相位误差而不是RMS表面误差用作参数时,Ruze公式具有不同的有效范围。当大型分段天线中存在明显的倾斜误差时,孔径RMS相位误差趋向于一个恒定值,而与孔径照明和段的形状无关。他们得出的结论是,与使用Ruze公式时的孔径RMS相位误差相比,天线RMS的表面误差更能反映孔径效率。他们发现,这一众所周知的表述是对大型分段反射器天线性能的下限。

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