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DOI: 10.1007\/s10291-004-0098-2. 10.1007\/s10291-004-0098-2","DOI":"10.1007\/s10291-004-0098-2"},{"key":"4","unstructured":"[4] G. Hein, M. Irsigler, J.A. Avilarodriguez, et al., \u201cEnvisioning a Future GNSS System of Systems Part 3 A Role for C-Band?,\u201d Inside GNSS, pp.64-73, 2007."},{"key":"5","unstructured":"[5] A. Schmitz-Peiffer, L. Stopfkuchen, F. Soualle, et al., \u201cAssessment on the use of C-band for GNSS within the European GNSS evolution programme,\u201d 21st International Technical Meeting of the Satellite Division of the Institute of Navigation, vol.2, no.6, pp.637-646, 2008."},{"key":"6","unstructured":"[6] A. Schmitz-Peiffer, L. Stopfkuchen, F. Soualle, et al., \u201cArchitecture for a future C-band\/L-band GNSS mission, Part 1: C-band services, space- and ground segment, overall performance,\u201d Inside GNSS magazine, pp.47-57, 2009."},{"key":"7","unstructured":"[7] J.H. Won, B. Eissfeller, B. 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DOI: 10.1017\/S0373463316000205. 10.1017\/s0373463316000205","DOI":"10.1017\/S0373463316000205"},{"key":"11","doi-asserted-by":"publisher","unstructured":"[11] X. Lu, H. Wu, Y. Bian, and Y. Hua, \u201dSignal structure of China area positioning system,\u201d Science in China Series G: Physics, Mechanics and Astronomy, vol.52, pp.412-422, 2009. DOI: 10.1007\/s11433-009-0061-x. 10.1007\/s11433-009-0061-x","DOI":"10.1007\/s11433-009-0061-x"},{"key":"12","unstructured":"[12] Z.Y. Li, Y. Bai, and X.C. Lu, \u201cResearch on radio frequency compatibility evaluation method of C<sub>N<\/sub> band navigation signal,\u201d J. Time and Frequency, vol.42, no.01, pp.87-95, 2019. DOI: 10.13875\/j.issn.1674-0637.2019-01-0087-09. 10.13875\/j.issn.1674-0637.2019-01-0087-09"},{"key":"13","unstructured":"[13] M.C. Niu, \u201cResearch on GNSS multi-frequency signal compatibility,\u201d Ph.D. Dissertation, Shanghai Jiaotong University, Shanghai, 2016."},{"key":"14","unstructured":"[14] M.H. Liu, X. Zhan, L. Wei, and M. Chen, \u201dA compatibility analysis between GNSS and radio astronomy\/microwave landing system in C band,\u201d J. Aeronautics, Astronautics and Aviation, vol.46, no.2, pp.102-107, 2014. DOI: 10.6125\/13-0624-749. 10.6125\/13-0624-749"},{"key":"15","unstructured":"[15] M.H. Liu, \u201cStudy on C band satellite navigation signal architecture,\u201d Ph.D. Dissertation, Shanghai Jiaotong University, Shanghai, 2016."},{"key":"16","unstructured":"[16] R. Xue and Y.B. Zhao, Design Theory and Key Technology of Multiband Satellite Navigation Signal, pp.101-120, Publishing House of Electronics Industry, Beijing, 2020."},{"key":"17","unstructured":"[17] R. Jia, B. Jiao, L. Zhao, et al., \u201cSusceptible characteristics of signal-carrier frequency on BPSK system,\u201d J. Radio Engineering, vol.48, no.1, pp.17-21, 2018. DOI: 10.3969\/j.issn.1003-3106.2018.01.04. 10.3969\/j.issn.1003-3106.2018.01.04"},{"key":"18","doi-asserted-by":"publisher","unstructured":"[18] K. Prabu, D.S. 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