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A study on data correlation for interferometric observations like VLBI and Delta-DOR applications and the correlation analysis of XF Correlator.

机译:VLBI和Delta-DOR应用等干涉观测数据相关研究及XF相关器的相关分析。

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Radio interferometric techniques have been applied to the tracking of spacecraft and enables precise measurement of the angular positions of spacecraft, stars and other cosmic objects in deep space. The image, or intensity distribution, of a source from the deep space has a Fourier transform that is the two-point correlation function of the electric field, whose components can be directly measured by an interferometer. In Very Long Baseline Interferometry (VLBI), the received signals are converted to an intermediate frequency low enough that they could be recorded directly on a magnetic tape and then given to the correlator. Delta differential One-way Ranging (?DOR), is an application of VLBI and is a powerful interplanetary navigation technique providing a direct measurement of the angular position of a spacecraft. The correlation processing is the core section of the receiving system and it gathers signals from independent antennas which are then processed to find essential data that are used for the guidance and navigation of a spacecraft. This paper explains the importance of data correlation in radio interferometry and then discusses different types of the correlators used for radio interferometry like XF, FX, HXF correlators. Then XF correlator will be explained in detail and the performance of time lag correlation section and the spectral response for different values of integration lengths of different time delays will be analysed.
机译:无线电干涉技术已经应用于航天器的跟踪,并能够精确地测量宇宙飞船,恒星和其他宇宙物体在深空中的角度位置。来自深度空间的源的图像或强度分布具有傅里叶变换,这是电场的两点相关功能,其组件可以通过干涉仪直接测量。在非常长的基线干涉测量法(VLBI)中,接收信号被转换为足够低的信号,使得它们可以直接记录在磁带上,然后给予相关器。 Delta差分单向测距(?DOR)是VLBI的应用,是一种强大的行星际导航技术,可直接测量航天器的角位置。相关处理是接收系统的核心部分,并且它从独立天线收集信号,然后被处理以找到用于航天器的引导和导航的基本数据。本文介绍了无线电干涉测量中数据相关性的重要性,然后讨论了用于XF,FX,HXF相关器等无线电干涉测量的不同类型的相关器。然后,将详细解释XF相关器,并分析时间滞后相关部分的性能和不同时间延迟的不同时间延迟的不同集成长度值的频谱响应。

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