[1] 谢军, 张建军, 王岗. 北斗卫星导航系统测量误差指标体系[J]. 宇航学报, 2018, 39(9):976-984. XIE Jun, ZHANG Jianjun, WANG Gang. Measurement error index system of BeiDou satellite navigation system[J]. Journal of Astronautics, 2018, 39(9):976-984. [2] 郭树人, 蔡洪亮, 孟轶男, 等. 北斗三号导航定位技术体制与服务性能[J]. 测绘学报, 2019, 48(7):810-821. DOI:10.11947/j.AGCS.2019.20190091. GUO Shuren, CAI Hongliang, MENG Yinan, et al. BDS-3 RNSS technical characteristics and service performance[J]. Acta Geodaetica et Cartographica Sinica, 2019, 48(7):810-821. DOI:10.11947/j.AGCS.2019.20190091. [3] China Satellite Navigation Office. BeiDou navigation satellite system signal in space interface control document open service signal B1I(Version 3. 0)[EB/OL]. (2019-02-27). http://en.beidou.gov.cn/SYSTEMS/ICD/201902/P020190227702348791891.pdf. [4] CHEN Qiuli, YANG Hui, CHEN Zhonggui, et al. Solar radiation pressure modeling and application of BDS satellites[J]. Journal of Geodesy and Geoinformation Science, 2020, 3(2):45-52. [5] YANG Yuanxi. Resilient PNT concept frame[J]. Journal of Geodesy and Geoinformation Science, 2019, 2(3):1-7. [6] 杨元喜. 综合PNT体系及其关键技术[J]. 测绘学报, 2016, 45(5):505-510. DOI:10.11947/j.AGCS.2016.20160127. YANG Yuanxi. Concepts of Comprehensive PNT and Related Key Technologies[J]. Acta Geodaetica et Cartographica Sinica, 2016, 45(5):505-510. DOI:10.11947/j.AGCS.2016.20160127. [7] 高为广, 苏牡丹, 李军正, 等. 北斗卫星导航系统试运行服务性能评估[J]. 武汉大学学报(信息科学版), 2012, 37(11):1352-1355. GAO Weiguang, SU Mudan, LI Junzheng, et al. A performance evaluation of BeiDou navigation satellite system[J]. Geomatics and Information Science of Wuhan University, 2012, 37(11):1352-1355. [8] YANG Yuanxi, XU Yangyin, LI Jinlong, et al. Progress and performance evaluation of BeiDou global navigation satellite system:data analysis based on BDS-3 demonstration system[J]. Science China:Earch Sciences, 2018,48(5):584-594. [9] YANG Yuanxi, GAO Weiguang, GUO Shuren, et al. Introduction to BeiDou-3 navigation satellite system[J]. Navigation, 2019, 66(1):7-18. [10] 李柏渝, 陈雷, 李彩华, 等. 通道非理想特性对导航接收机伪码测距零值的影响分析[J]. 电子与信息学报, 2011, 33(9):2138-3143. LI Baiyu, CHEN Lei, LI Caihua, et al. The impact of non-ideal front-end characteristic on PN zero value measurement of navigation receivers[J]. Journal of Electronics & Information Technology, 2011, 33(9):2138-3143. [11] FELHAUER T. On the impact of RF front-end group delay variations on GLONASS pseudorange accuracy[C]//Proceeding of the 10th International Technical Meeting of the Satellite Division of the Institute of Navigation. Kansas City, Missouri:[s.n.], 1997:1527-1532. [12] LU Mingquan, LI Wenyi, YAO Zheng, et al. Overview of BDS Ⅲ new signals[J]. Navigation, 2019, 66(1):19-35. [13] YAO Zheng, ZHANG Jiayi, LU Mingquan. ACE-BOC:dual-frequency constant envelope multiplexing for satellite navigation[J]. IEEE Transactions on Aerospace and Electronic Systems, 2016, 52(1):466-485. [14] 朱祥维, 李垣陵, 雍少为, 等. 群时延的新概念、测量方法及其应用[J]. 电子学报, 2008, 36(9):1819-1823. ZHU Xiangwei, LI Yuanling, YONG Shaowei, et al. A new definition, measurement method of group delay and its application[J]. Acta Electronica Sinica, 2008, 36(9):1819-1823. [15] ZHANG Zhongkai, DU Lan, LIU Li, et al. A 16-parameter GEO broadcast ephemeris[J]. Journal of Geodesy and Geoinformation Science, 2018, 1(1):46-52. [16] TANG Zuping, ZHOU Hongwei, HU Xiulin, et al. Research on performance evaluation of Compass signal[J]. Scientia Sinica (Physica, Mechanica & Astronomica), 2010, 40(5):592-602. [17] BORIO D, FANTINO M, PRESTI L L, et al. Robust DLL discrimination functions normalization in GNSS receivers[C]//Proceedings of 2008 IEEE/ION Position, Location and Navigation Symposium. Monterey, CA:IEEE, 2008:173-180. [18] 周鸿伟, 魏蛟龙, 张小清, 等. 导航卫星有效载荷非理想特性研究[J]. 华中科技大学学报(自然科学版), 2014, 42(7):118-123. ZHOU Hongwei, WEI Jiaolong, ZHANG Xiaoqing, et al. Research on non-ideal property of payload core device on navigation satellite[J]. Journal of Huazhong University of Science and Technology (Natural Science Edition), 2014, 42(7):118-123. [19] YANG D X. Research on simulated distortion of GNSS spatial signal and its predistortion method[D]. Beijing:Beihang University, 2015:39-40. [20] 蔚小龙, 寇艳红. 导航卫星双频复用信号模拟失真的仿真[J]. 北京航空航天大学学报, 2018, 44(5):1048-1055. YU Xiaolong, KOU Yanhong. Simulation of analog distortion of dual-frequency multiplexing signal generated by navigation satellite[J]. Journal of Beijing University of Aeronautics and Astronautics, 2018, 44(5):1048-1055. [21] XUE Shuqiang, YANG Yuanxi. Adjustment model and colored noise compensation of continuous observation system[J]. Journal of Geodesy and Geoinformation Science, 2018, 1(1):39-45. [22] YANG Yuanxi, GAO Weiguang. An optimal adaptive kalman filter[J]. Journal of Geodesy, 2006,80(4):177-183.DOI:10.1007/s00190-006-0041-0. [23] YANG Zhimei, XU Qibing, HAN Hong, et al. Research on pre-distortion technology for navigation transmitting channel[C]//The 6th China Satellite Navigation Conference. Xi'an:[s.n.], 2015. [24] MEHTA J, ZOICAS V, ELIEZER O, et al. An efficient linearization scheme for a digital polar EDGE transmitter[J]. IEEE Transactions on Circuits and System Ⅱ:Express Briefs, 2010, 57(3):193-197. [25] GAO Yang, LI Chunxia, FU Li, et al. Overall performance comparison of three dual-frequency constant envelop modulation schemes for GNSS[C]//Proceedings of 2016 China Satellite Navigation Conference (CSNC). Singapore:Springer, 2016:47-56. [26] 田野, 张立新, 严涛, 等. 基于稀疏表示的北斗导航卫星预失真滤波器设计方法[C]//第九届中国卫星导航学术年会. 哈尔滨:[s.n.], 2018. TIAN Ye, ZHANG Lixin, YAN Tao, et al. A pre-distortion filter design algorithm based on sparse representation for BeiDou navigation satellite[C]//Proceedings of the 9th China Satellite Navigation Conference. Harbin:[s.n.], 2018. |