By Dabove, Paolo; Manzino, Ambrogio; De Agostino, Mattia
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Extra info for Achievable positioning accuracies in a network of GNSS reference stations
The modiﬁed CM code is obtained from the original CM code with every alternative sample being zero padded to account for the TM structure. e. Tint = 20 ms. Nevertheless, it provides M partial correlation results with Tint = l ms as in Fig. 7. It can be thought of as the partial acquisition process using M different local codes of 1-ms length. , R M have the same sign. Therefore, the differential combination can be used among these M outputs without any loss from the data transition effect. These M correlator outputs are then directed to Post Correlation Signal Processing Block, which contains 3 differential combination solutions, namely CDC, GDC and MGDC, as presented in Section 4.
Ta, T. , Margaria, D. & Presti, L. L. (2010). Comparative Study on Joint Data/Pilot Strategies for High Sensitivity Galileo E1 Open Service Signal Acquisition, IET Radar, Sonar and Navigation 4, Issue 6: 764–779. Ta, T. , Qaisar, S. , Dempster, A. & Dovis, F. (2012). Partial Differential Post Correlation Processing for GPS L2C Signal Acquisition, IEEE Transactions on Aerospace and Electronic Systems 48, Issue 2. Tsui, J. -Y. (2005). Fundamentals of Global Positioning System Receivers: a Software Approach, 2nd edn, Wiley-Interscience.
H. (2010). "Acquisition Architecture for Modern GNSS Signals", PhD thesis, Polytechnique University of Turin, Italy. Ta, T. , Lesca, R. & Margaria, D. (2008). Comparison of Joint Data/Pilot High-Sensitivity Acquisition Strategies for Indoor Galileo E1 Signal, Proceedings of ENC-GNSS 2008, Toulouse, France. Ta, T. , Margaria, D. & Presti, L. L. (2010). Comparative Study on Joint Data/Pilot Strategies for High Sensitivity Galileo E1 Open Service Signal Acquisition, IET Radar, Sonar and Navigation 4, Issue 6: 764–779.