首页> 外文会议>Conference on Ground-Based Telescopes pt.2; 20040621-20040625; Glasgow; GB >Focal Plane Arrays for large Reflector Antennas: First Results of a Demonstrator Project
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Focal Plane Arrays for large Reflector Antennas: First Results of a Demonstrator Project

机译:大型反射天线的焦平面阵列:演示项目的初步结果

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The surveying speed of large reflectors can be increased by one or two orders of magnitude when the focal fields are sampled with a dense phased array. In a dense array consisting of a large number of antenna elements (100 up to 1000), multiple beams can be synthesised and steered electronically. This collecting and manipulating of the entire electric field in the focal plane creates the possibility of a simultaneously improvement in the efficiency of existing telescopes and open up wide fields-of-view. This paper will describe the first results of the EU project FARADAY. The approach chosen in FARADAY is to use a Vivaldi array of 72 antenna elements configured in 8x9 grid. The analogue beamformer, integrated with the antenna array, syntheses beams by using for example 3x3 elements combined in three rings, where each ring is given a specific weight factor. The number of beams has been limited to two in this demonstrator project. Further more we will explore the possibilities and limitations of the large-scale use of Focal Plane Arrayis, in particular for the fourteen 25-meter reflectors of the Westerbork Syntheses Radio Telescope (WSRT).
机译:当使用密集的相控阵对焦点场进行采样时,大型反射镜的测量速度可以提高一到两个数量级。在由大量天线元件(100至1000个)组成的密集阵列中,可以合成多束波束并进行电子控制。焦平面中整个电场的这种收集和操纵创造了同时提高现有望远镜的效率并开阔视野的可能性。本文将描述欧盟项目FARADAY的初步结果。 FARADAY中选择的方法是使用以8x9网格配置的72个天线元件的Vivaldi阵列。与天线阵列集成在一起的模拟波束形成器通过使用例如3个3x3元素组合成三个环来合成波束,其中每个环都具有特定的权重因子。在该演示项目中,光束数量限制为两个。此外,我们还将探讨焦平面阵列的大规模使用的可能性和局限性,特别是用于韦斯特博克合成射电望远镜(WSRT)的十四个25米反射镜。

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