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Calibration of a large distributed low frequency radio astronomical array (LOFAR)

机译:大型分布式低频射电天文阵列(LOFAR)的校准

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Several low frequency radio astronomy arrays are currently under development. For example the LOFAR array (with 13,000 dipole elements) will operate in the frequency range of 20MHz-240Mhz. At these frequencies the effect of the ionosphere cannot be ignored. Due to the fact that the size of the array is larger than the size of the irregularities in the ionosphere the calibration problem is direction dependent and time varying. The most general form of this problem does not have a unique solution given a single sample covariance estimate. In this paper we explore several constraints derived from the physics of the problem which make the problem solvable.
机译:目前正在开发几种低频射电天文学阵列。例如,LOFAR阵列(具有13,000个偶极子元素)将在20MHz-240Mhz的频率范围内运行。在这些频率下,电离层的作用不容忽视。由于阵列的大小大于电离层中不规则区域的大小,因此校准问题取决于方向和时间变化。给定单个样本协方差估计值,此问题的最一般形式没有唯一的解决方案。在本文中,我们探索了从问题的物理原理得出的几个约束,这些约束使问题可以解决。

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