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本章参考文献

[1] 杨元喜.北斗卫星导航系统的进展、贡献与挑战[J].测绘学报,2010,39(1):1-6.

[2] YANG Y,GAO W,GUO S,et al.Introduction to BeiDou-3 navigation satellite system [J].Navigation,2019,66(1):7-18.

[3] 杨元喜.综合PNT体系及其关键技术[J].测绘学报,2016,45(5):505-510.

[4] 中国卫星导航系统管理办公室.以北斗为核心的国家PNT体系拓展中国发展空间[EB/OL].(2017-08-23)[2022-07-03].来源于北斗官网.

[5] China Satellite Navigation Office(CSNO).The Application Service Architecture of BeiDou Navigation Satellite System(Version 1.0)[EB/OL].(2019-09)[2022-07-03].来源于北斗官网.

[6] China Satellite Navigation Office(CSNO).Development of the BeiDou Navigation Satellite System(Version 4.0)[EB/OL].(2019-09)[2022-07-03].来源于北斗官网.

[7] China Satellite Navigation Office(CSNO).BeiDou Navigation Satellite System Open Service Performance Standard(Version 3.0)[EB/OL].(2021-05)[2022-07-03].来源于北斗官网.

[8] MARTIN H. Global Positioning System(GPS)Program and Policy Update[C]//Proceedings of the 15th Meeting of the International Committee on Global Navigation Satellite Systems,2011.

[9] MARTIN H. Status and Modernization of the US Global Positioning System and WAAS[C]//Proceedings of the Munich Satellite Navigation Summit,2022.

[10] 卢晓春,王萌,王雪,等.GPSⅢ首星信号结构及其特性分析[J].电子与信息学报,2021,43(8):2317-2323.

[11] 杨宁虎,刘春保,杨哲.美国GPS导航战技术发展分析[J].国际太空,2017(12):4-8.

[12] 杨宁虎,刘春保.卫星导航系统赛博安全技术发展[J].卫星应用,2018(9):27-31.

[13] OROLIA.A Holistic Approach to Protect,Toughen & Augment [EB/OL].(2018-05-12)[2022-07-03].来源于GPS官网.

[14] Satellite Time & Location [EB/OL].(2020)[2022-07-03].来源于Satelles公司官网.

[15] 梁健.铱星STL系统定位方法研究[D].武汉:华中科技大学,2019.

[16] United States Air Force.Global positioning system constellation replenishment [EB/OL].(2015-02)[2022-07-03].来源于GPS官网.

[17] HAROLD M. Global Positioning System(GPS)Program and Policy Update [EB/OL].(2021-09-28)[2022-07-03].来源于UNOOSA官网.

[18] GLOTOV V D,REVNIVYKH S G,MITRIKAS V V.GLONASS Status Update.MCC activity in GLONASS program [EB/OL](2006)[2022-07-03].来源于CDDIS官网.

[19] REVNIVYKH I. Glonass status and prospects of development [EB/OL].(2021-09-28)[2022-07-03].来源于UNOOSA官网.

[20] REVNIVYKH I. Global Navigation Satellite System(GLONASS)status and prospects of development[C]//Proceeding of the 15th International Committee on Global Navigation Satellite Systems,2021.

[21] GODET J. Status of Galileo[C]//Proceeding of the Munich Satellite Navigation Summit,2022.

[22] STEIGENBERGER P,MONTENBRUCK O. Galileo status:orbits,clocks,and positioning [J]. GPS Solutions,2017,21(2):319-331.

[23] 张琳,曾子芳.伽利略卫星导航系统的初步性能评估[J].中国惯性技术学报,2017,25(1):91-96.

[24] 丁赫,刘帅,孙付平,等.Galileo卫星导航系统初始运行阶段单点定位性能评估与分析[J].大地测量与地球动力学,2018,38(10):1038-1042.

[25] HAYES D.GALILEO Status Update[C]//Proceedings of the 15th International Committee on Global Navigation Satellite Systems,2021.

[26] HAYES D,HAHN J.2019-Galileo Programme Update [EB/OL].(2019-09)[2022-07-03].来源于UNOOSA官网.

[27] LIU C,GAO W,LIU T,et al.Design and implementation of a BDS precise point positioning service [J].Navigation,2020,67(4):875-891.

[28] European Gnss Service Center.Update on the availability of some Galileo Initial Services [EB/OL].(2019)[2022-07-03].来源于GALILEO官网.

[29] European Gnss Service Center.Further information on the event of 14th December [EB/OL].(2019)[2022-07-03].来源于GALILEO官网.

[30] GLASER S,MICHALAK G,MäNNEL B,et al.Reference system origin and scale realization within the future GNSS constellation "Kepler" [J].Journal of Geodesy,2020,94(12):1-13.

[31] 高为广,张弓,刘成,等.低轨星座导航增强能力研究与仿真[J].中国科学:物理学 力学 天文学,2021,51(1):52-62.

[32] QZSS. Overview of the Quasi-Zenith Satellite System [EB/OL].(2018)[2022-07-03].来源于QZSS官网.

[33] QZSS. What is the Quasi-Zenith Satellite System?[EB/OL].(2018)[2022-07-04].来源于QZSS官网.

[34] INABA N,MATSUMOTO A,HASE H,et al.Design concept of quasi zenith satellite system [J].Acta Astronautica,2009,65(7-8):1068-1075.

[35] HAUSCHILD A,STEIGENBERGER P,RODRIGUEZ-SOLANO C. Signal,orbit and attitude analysis of Japan's first QZSS satellite Michibiki [J]. GPS Solutions,2012,16(1):127-133.

[36] KOGURE S. Status of the Japanese QZSS Regional System[C]//Proceedings of the Munich Satellite Navigation Summit,2022∶7-8.

[37] YAMAZAKI H. Introduction of QZSS and application [EB/OL].(2018-02-08)[2022-07-03].来源于JETRO官网.

[38] Cabinet Office.Quasi-Zenith Satellite System Performance Standard(PS-QZSS-001)[EB/OL].(2018-11-05)[2022-07-03].来源于QZSS官网.

[39] Cabinet Office.Quasi-Zenith satellite system interface specification sub-meter level augmentation service(IS-QZSS-L1S-004)[EB/OL].(2019-09-27)[2022-0703].来源于QZSS官网.

[40] Cabinet Office.Quasi-Zenith satellite system interface specification centimeter level augmentation service(IS-QZSS-L6-001)[EB/OL].(2018-11-05)[2022-07-03].来源于QZSS官网.

[41] 杨振.印度区域卫星导航系统的发展现状[J].导航定位学报,2021,9(3):20-25.

[42] 刘春保.2016年国外导航卫星发展回顾[J].国际太空,2017(2):34-42.

[43] SURA P S. Status of IRNSS/NavIC and GAGAN[C]//Proceedings of the Munich Satellite Navigation Summit,2022.

[44] Indian Space Research Organisation(ISRO).IRNSS Programme [EB/OL].(2019)[2022-07-03].来源于ISRO官网.

[45] KIM T. General Overview of KPS[C]//Proceedings of the Munich Satellite Navigation Summit,2022.

[46] 刘春保.2018年国外导航卫星发展综述[J].国际太空,2019(2):42-47.

[47] 中国卫星导航系统管理办公室.GPS信号的SA政策和AS政策[EB/OL].(2011-05-16)[2022-07-03].来源于北斗官网.

[48] 郭树人,刘成,高为广,等.卫星导航增强系统建设与发展[J].全球定位系统,2019,44(2):1-12.

[49] FAA. Global Positioning System Wide Area Augmentation System(WAAS)Performance Standard(1st Edition)[EB/OL].(2008-10-31)[2022-07-03].来源于ROSAP官网.

[50] CELESTINO U.EGNOS status and plans [EB/OL].(2016-04-05)[2022-07-03].来源于ICAO官网.

[51] SAITO S.MSAS system development [EB/OL].(2019-06-03)[2022-07-03].来源于ICAO官网.

[52] ICAO. International standards and recommended practices(Seventh Edition)[C]//Proceedings of the Annex 10-Aeronautical telecommunications,2018.

[53] ZUMBERGE J,HEFLIN M,JEFFERSON D,et al.Precise point positioning for the efficient and robust analysis of GPS data from large networks [J].Journal of Geophysical Research:Solid Earth,1997,102(B3):5005-5017.

[54] KOUBA J,HéROUX P. Precise point positioning using IGS orbit and clock products [J]. GPS Solutions,2001,5(2):12-28.

[55] KOUBA J. Measuring seismic waves induced by large earthquakes with GPS [J]. Studia Geophysica et Geodaetica,2003,47(4):741-755.

[56] GE M,GENDT G,ROTHACHER M A,et al.Resolution of GPS carrier-phase ambiguities in precise point positioning(PPP)with daily observations [J].Journal of Geodesy,2008,82(7):389-399.

[57] LAURICHESSE D,MERCIER F,BERTHIAS J P,et al.Integer ambiguity resolution on undifferenced GPS phase measurements and its application to PPP and satellite precise orbit determination [J].Navigation,2009,56(2):135-149.

[58] SHI J,GAO Y.A comparison of three PPP integer ambiguity resolution methods [J].GPS Solutions,2014,18(4):519-528.

[59] GENG J,TEFERLE F N,MENG X,et al.Towards PPP-RTK:Ambiguity resolution in real-time precise point positioning [J].Advances in Space Research,2011,47(10):1664-1673.

[60] GENG J,SHI C,GE M,et al.Improving the estimation of fractional-cycle biases for ambiguity resolution in precise point positioning [J].Journal of Geodesy,2012,86(8):579-589.

[61] ZOU X,TANG W,SHI C,et al.Instantaneous ambiguity resolution for URTK and its seamless transition with PPP-AR [J].GPS Solutions,2015,19(4):559-567.

[62] FAA. Satellite navigation—Ground Based Augmentation System(GBAS)[EB/OL].(2016-05-19)[2022-07-02].来源于FAA官网.

[63] FAA. Satellite navigation-GBAS-how it works [EB/OL].(2017-09-07)[2022-07-03].来源于FAA官网. grnqa2MXtNCJtK35aOJ0/gZb3o/NY4/3+CeVVkjGnonlZlPYDXZ9jRamlYqWxCx1

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