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      Design and Performance Evaluation of a Dual Antenna Joint Carrier Tracking Loop

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          Abstract

          In order to track the carrier phases of Global Navigation Satellite Systems (GNSS) signals in signal degraded environments, a dual antenna joint carrier tracking loop is proposed and evaluated. This proposed tracking loop processes inputs from two antennas, namely the master antenna and the slave antenna. The master antenna captures signals in open-sky environments, while the slave antenna capture signals in degraded environments. In this architecture, a Phase Lock Loop (PLL) is adopted as a master loop to track the carrier phase of the open-sky signals. The Doppler frequency estimated by this master loop is utilized to assist weak carrier tracking in the slave loop. As both antennas experience similar signal dynamics due to satellite motion and clock frequency variations, a much narrower loop bandwidth and possibly a longer coherent integration can be adopted to track the weak signals in slave channels, by utilizing the Doppler aid from master channels. PLL tracking performance is affected by the satellite/user dynamics, clock instability, and thermal noise. In this paper, their impacts on the proposed phase tracking loop are analyzed and verified by both simulation and field data. Theoretical analysis and experimental results show that the proposed loop structure can track degraded signals ( i.e., 18 dB-Hz) with a very narrow loop bandwidth ( i.e., 0.5 Hz) and a TCXO clock.

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          Performance Analysis of Vector Tracking Algorithms for Weak GPS Signals in High Dynamics

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            Carrier loop architectures for tracking weak GPS signals

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              Choosing the coherent integration time for Kalman filter-based carrier-phase tracking of GNSS signals

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                Author and article information

                Contributors
                Role: Academic Editor
                Journal
                Sensors (Basel)
                Sensors (Basel)
                sensors
                Sensors (Basel, Switzerland)
                MDPI
                1424-8220
                01 October 2015
                October 2015
                : 15
                : 10
                : 25399-25415
                Affiliations
                [1 ]GNSS Research Center, Wuhan University, Wuhan 430079, China; E-Mails: wf.guo@ 123456whu.edu.cn (W.G.); shi@ 123456whu.edu.cn (C.S.); hpzhang@ 123456whu.edu.cn (H.Z.)
                [2 ]Department of Geomatrics Engineering, University of Calgary, Calgary, AB T2N 1N4, Canada; E-Mail: tlin@ 123456ucalgary.ca
                Author notes
                [* ]Author to whom correspondence should be addressed; E-Mail: xjniu@ 123456whu.edu.cn ; Tel.: +86-186-0270-8312; Fax: +86-27-6877-8890.
                Article
                sensors-15-25399
                10.3390/s151025399
                4634426
                26437415
                3eff2f8f-f074-44e6-b273-bf22c6d5b71c
                © 2015 by the authors; licensee MDPI, Basel, Switzerland.

                This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 11 March 2015
                : 28 September 2015
                Categories
                Article

                Biomedical engineering
                gnss receiver,carrier phase tracking,differential carrier phase,weak signal,loop bandwidth

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