[1] WANG J. Pseudolite Applications in Positioning and Navigation: Progress and Problems[J]. Journal of Global Positioning Systems, 2002, 1(1): 48-56
[2] 王丹. 伪卫星动态定位方法及其增强GPS技术的研究[D]. 哈尔滨工程大学. 2009
[3] 何秀凤, 陈永奇, 桑文刚等. GPS 伪卫星组合定位方法及在变形监测中的应用[J]. 南京航空航天大学学报, 2008, 39(6): 795-799
[4] 杨光. GPS 和伪卫星组合定位技术及其在形变监测中的应用 [D]. 河海大学, 2004
[5] COHEN C E, PERVAN B S, COBB H S, et al. Real-time cycle ambiguity resolution using a pseudolite for precision landing of aircraft with GPS[C]. //Proceedings of the Second International Symposium on Differential Satellite Navigation Systems (DSNS93), Amsterdam, 1993
[6] DAI L, WANG J, RIZOS C, HAN S. Pseudo-satellites applications in deformation monitoring[J]. GPS Solutions, 2001, 5(3): 80-87
[7] STONE J M, LEMASTER E A, POWELL J D, et al. GPS pseudolite transceivers and their applications[C]//Proceedings of the 1999 Institute of Navigation National Technical Meeting, San Diego, CA. 1999
[8] LEMASTER E A. Self-calibrating pseudolite arrays: theory and experiment[M]. Stanford University, 2002
[9] LEMASTER E A, ROCK S M. A local-area GPS pseudolite-based navigation system for mars rovers[J]. Autonomous Robots, 2003, 14(2-3): 209-224
[10] LEMASTER E A, ROCK S M. An Improved Solution Algorithm for Self-Calibrating Pseudolite Arrays[C]//Proceedings of the 2002 Institute of Navigation National Technical Meeting, San Diego, CA. 2002
[11] BARNES J, RIZOS C, WANG J, et al. Locata: a new positioning technology for high precision indoor and outdoor positioning[C]//Proceedings of 2003 International Symposium on GPS\ GNSS, 2003: 9-18
[12] BARNES J, RIZOS C, WANG J, et al. Locata: the positioning technology of the future[C]//Proceedings of the 6th International Symposium on Satellite Navigation Technology Including Mobile Positioning & Location Services, Melbourne, Australia, July, 2003
[13] BARNES J, RIZOS C, KANLI M, et al. Indoor industrial machine guidance using Locata: A pilot study at BlueScope Steel[C]//60th Annual Meeting of the US Inst. of Navigation. 2004: 533-540
[14] BARNES J, RIZOS C, KANLI M, et al. Locata: A new positioning technology for classically difficult GNSS environments[C]//Proceedings of the international global navigation satellite systems society IGNSS Symposium. 2006
[15] MONTILLET J P, MENG X, ROBERTS G W, et al. Achieving centimetre-level positioning accuracy in urban canyons with Locata technology[J]. Journal of Global Positioning Systems, 2007, 6(2): 158-165
[16] KEE C, JUN H, YUN D. Indoor navigation system using asynchronous pseudolites[J]. The Journal of Navigation, 2003, 56(03): 443-455
[17] 刘峻宁, 翟传润, 宋嫡儿, 等. 基于改进时星差分的室内伪卫星精密单点定位研究[J]. 武汉大学学报: 信息科学版, 2009, 34(1): 105-108
[18] Wu M, HUANG J, XU Y, et al. Precise Antenna Calibration for Ground-Based Pseudolite[M] //Earth on the Edge: Science for a Sustainable Planet. Springer Berlin Heidelberg, 2014: 487-491
[19] WANG J, LEE H K. Impact of pseudolite location errors in positioning [J]. Geomatics Research Australasia, 2002, 77(1): 81-94 |