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Implementation of an optimized Cassegrain system for radio telescopes

机译:优化的射电望远镜卡塞格林系统的实现

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摘要

We present the antenna design for a radio interferometer, the Arcminute Microkelvin Imager, together with its beam pattern measurement. Our aim was to develop a low-cost system with high aperture efficiency and low ground spill across the frequency range 12-18 GHz. We use a modified Cassegrain system consisting of a commercially available paraboloidal primary mirror with a diameter of 3.7 m, and a shaped secondary mirror. The secondary mirror is oversized with respect to a ray optics design and has a surface that is bent towards the primary near its outer edge using a square term for the shaping. The antennas are simple to manufacture and therefore their cost is low. The design increased the antenna gain by approximately 10 per cent compared to a normal Cassegrain system while still maintaining low contamination from ground spill and using a simple design for the horn. © 2008 RAS.
机译:我们介绍了无线电干涉仪Arcminute Microkelvin Imager的天线设计及其波束方向图测量。我们的目标是开发一种低成本系统,在12-18 GHz频率范围内具有高孔径效率和低地面泄漏。我们使用改进的Cassegrain系统,该系统由市售的直径为3.7 m的抛物面主镜和定型副镜组成。辅助镜相对于射线光学设计而言尺寸过大,并且使用一个平方项进行整形,使其表面在其外边缘附近朝向主镜弯曲。天线易于制造,因此成本较低。与普通的Cassegrain系统相比,该设计将天线增益提高了约10%,同时仍保持了地面泄漏造成的低污染,并且对号角采用了简单的设计。 ©2008 RAS。

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