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Radio frequency interference mitigation for detection of extended sources with an interferometer

机译:射频干扰缓解技术,用于通过干涉仪检测扩展源

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摘要

Radio frequency interference (RFI) is a significant problem for current and future radio telescopes. We describe here a method for postcorrelation cancellation of RFI for the special case of an extended source observed with an interferometer that spatially resolves the astronomical signal. In this circumstance the astronomical signal is detected through the autocorrelations of each antenna but is not present in the cross correlations between antennas. We assume that the RFI is detected in both autocorrelations and cross correlations, which is true for many cases. The large number of cross correlations can provide a very high interference-to-noise ratio reference signal which can be adaptively subtracted from the autocorrelation signals. The residual signal is free of interference to significant levels. We discuss the application of this technique for detection of the spin-flip transition of interstellar deuterium with the Allen Telescope Array. The technique may also be of use for epoch of reionization experiments and with multibeam feeds on single-dish telescopes.
机译:对于当前和将来的射电望远镜来说,射频干扰(RFI)是一个重大问题。我们在此描述一种特殊的扩展信号源的RFI后相关消除方法,这种特殊情况是用空间分辨天文信号的干涉仪观察到的。在这种情况下,天文信号是通过每个天线的自相关来检测的,但在天线之间的互相关中不存在。我们假设在自相关和互相关中都检测到了RFI,这在许多情况下都是正确的。大量的互相关可以提供非常高的干扰噪声比参考信号,可以从自相关信号中自适应减去这些参考信号。残留信号无明显干扰。我们讨论了该技术在利用艾伦望远镜阵列检测星际氘自旋翻转转变中的应用。该技术还可以用于电离实验的时代,以及单碟望远镜上的多光束进料。

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