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The Arecibo upgrading: electrical design and expected performance of the dual-reflector feed system

机译:Arecibo升级:双反射器馈电系统的电气设计和预期性能

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The paper describes the electrical design and predicted performance of a dual-reflector feed for the fixed spherical reflector of the Arecibo radio telescope. This dual-reflector feed, dubbed the Gregorian has much larger bandwidth, lower losses, and provides better aperture illumination than the old line feeds. The paper begins with a historical review of the line feeds and the first conceptual designs of the dual-reflector feed. Following is a description of the mini-Gregorian, a small test version of the dual-reflector feed concept which is in use on the Arecibo telescope. The selection of an optimized geometry for the full-size Gregorian is detailed. The primary feeds must be a practical size at lower frequencies, the selected /spl plusmn/60/spl deg/ illumination angle from the focal point provides this attribute. The main body of the paper describes the expected performance of the final Gregorian design in the frequency range of 250 MHz to 8 GHz. The high-frequency performance is limited by the surface tolerance of the spherical main reflector and the alignment tolerances of the Gregorian feed. The latter effects are simulated and discussed. The low-frequency performance is limited by edge diffraction on both reflectors and by an unusual diffraction effect created by a very nonuniform field distribution near the center of the larger feed reflector. At low frequencies the exit pupil of the surrounding enclosure blocks some of the edge diffracted fields. This blockage causes extra losses and potential multi-path problems, problems which are both discussed. A cluster of seven feed horns providing multiple beams at 1.42 GHz is discussed.
机译:本文介绍了Arecibo射电望远镜的固定球面反射器的双反射器馈电的电气设计和预测性能。这种双反射器馈源(称为Gregorian)具有比旧的馈线更大的带宽,更低的损耗并提供更好的光圈照明。本文首先对换行和双反射器提要的概念设计进行了历史回顾。以下是对迷你格里高利安的描述,这是在Arecibo望远镜上使用的双反射镜馈电概念的小型测试版本。详细介绍了为全尺寸Gregorian选择最佳几何形状的方法。主馈源必须在较低的频率下具有实用的大小,从焦点选择的/ spl plusmn / 60 / spl deg /照明角度可提供此属性。本文的主体描述了最终格里高利设计在250 MHz至8 GHz频率范围内的预期性能。高频性能受到球形主反射器的表面公差和格里高利进给装置的对准公差的限制。模拟和讨论了后者的影响。低频性能受到两个反射镜上的边缘衍射以及较大馈源反射镜中心附近非常不均匀的场分布所产生的异常衍射效应的限制。在低频下,周围外壳的出射光瞳会阻挡一些边缘衍射场。这种阻塞导致额外的损失和潜在的多路径问题,这两个问题均已讨论。讨论了七个提供1.42 GHz多个波束的馈电喇叭的群集。

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