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Active Adaptive Arrays: The ASTRON Approach to SKA

机译:有源自适应阵列:ASTRON方法用于SKA

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摘要

It has been argued, for a number of reasons, that the next generation radio telescope should be a multi-element interferometer with a collecting area of about 1 km2. The remaining parameters of such an instrument – frequency range, angular resolution, instantaneous bandwidth, etc. – will be science driven. The requirements for propagation studies are briefly discussed, and it is pointed out how variable-source confusion may differ from the normal variety. Finally, the Dutch project to achieve a large collecting area using adaptive arrays of active antennas is described. A systematic approach has been adopted, with the construction of arrays of increasing complexity to test design features at each state. Recently, development of a low frequency array (LOFAR) has become an additional option. It would facilitate tests of some of the larger instrument's features, and provide real data on the influence of the ionosphere and interfering sources.
机译:出于多种原因,人们认为下一代射电望远镜应该是一个多元素干涉仪,其收集面积约为1 km2 。这种仪器的其余参数(频率范围,角分辨率,瞬时带宽等)将由科学决定。简要讨论了传播研究的要求,并指出了可变源混淆可能与正常品种有何不同。最后,介绍了使用主动天线的自适应阵列实现较大收集面积的荷兰项目。已经采用了一种系统的方法,其结构的复杂度不断增加,以在每个状态下测试设计特征。最近,开发低频阵列(LOFAR)已成为一种附加选择。这将有助于测试某些大型仪器的功能,并提供有关电离层和干扰源影响的真实数据。

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