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Accurate Beam Prediction Through Characteristic Basis Function Patterns for the MeerKAT/SKA Radio Telescope Antenna

机译:通过特征基函数模式对MeerKAT / SKA射电望远镜天线进行精确的波束预测

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摘要

A novel beam expansion method is presented that requires employing only a few Characteristic Basis Function Patterns (CBFPs) for the accurate prediction of antenna beam patterns. The method is applied to a proposed design of the MeerKAT/SKA radio telescope, whose antenna geometry is subject to small deformations caused by mechanical or gravitational forces. The resulting deformed pattern, which is affected in a nonlinear fashion by these deformations is then sampled in a few directions only after which the interpolatory CBFPs accurately predict the entire beam shape (beam calibration). The procedure for generating a set of CBFPs—and determining their expansion coefficients using a few reference point sources in the sky—is explained, and the error of the final predicted pattern relative to the actual pattern is examined. The proposed method shows excellent beam prediction capabilities, which is an important step forward towards the development of efficient beam calibration methods for future imaging antenna systems.
机译:提出了一种新颖的波束扩展方法,该方法仅需要使用几个特征基函数模式(CBFP)即可准确预测天线波束方向图。该方法被应用于MeerKAT / SKA射电望远镜的拟议设计中,该望远镜的天线几何形状易受机械或重力作用而产生的微小变形。然后,仅在几个方向上对由此变形以非线性方式受到影响的变形图案进行采样,然后,内插CBFP才能准确预测整个光束形状(光束校准)。解释了生成一组CBFP的过程,并使用天空中的几个参考点源确定了它们的膨胀系数,并检查了最终预测图案相对于实际图案的误差。所提出的方法显示出优异的波束预测能力,这是朝着未来成像天线系统的有效波束校准方法发展迈出的重要一步。

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