Vector tracking loop design for degraded signal environment

Nazia Kanwal, H. Hurskainen, J. Nurmi
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引用次数: 30

Abstract

This paper presents vector tracking algorithm for tracking the pseudorandom code of satellite navigation signals, which is suitable for degraded signal environment. The benefits of the vector tracking in comparison of scalar tracking are also explained. This vector tracking algorithm is based on the discriminator function. Conventional GPS receivers use scalar tracking methods and signals from each channel are processed independently. On the contrary, vector tracking loops process the signals in aggregate and can provide better tracking in degraded signal environment, since the channels are closely correlated in vector mode. In vector tracking approach the tracking control input is generated by the navigation filter. The vector tracking loops can operate in weak signal conditions and can rapidly reacquire the weak or attenuated signals. In this paper the ability of vector tracking loop to reacquire the signals is explored and is compared with conventional scalar tracking method.
退化信号环境下的矢量跟踪回路设计
提出了一种适用于信号退化环境的卫星导航信号伪随机码跟踪的矢量跟踪算法。并说明了矢量跟踪相对于标量跟踪的优点。该矢量跟踪算法是基于鉴别器函数的。传统的GPS接收机采用标量跟踪方法,每个通道的信号都是独立处理的。相反,矢量跟踪环路对信号进行集中处理,由于通道在矢量模式下紧密相关,可以在退化信号环境下提供更好的跟踪。在矢量跟踪方法中,跟踪控制输入由导航滤波器产生。矢量跟踪回路可以在微弱信号条件下工作,并能快速重新获取微弱或衰减的信号。本文探讨了矢量跟踪环路对信号的重采集能力,并与传统的标量跟踪方法进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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