Open Access
Issue |
JNWPU
Volume 43, Number 2, April 2025
|
|
---|---|---|
Page(s) | 222 - 232 | |
DOI | https://doi.org/10.1051/jnwpu/20254320222 | |
Published online | 04 June 2025 |
- HU Zhigang. Beidou navigation satellite system performance assessment theory and experimental verification[D]. Wuhan: Wuhan University, 2013 (in Chinese) [Google Scholar]
- ZHANG Qinghua, WANG Yuan, SUN Yangyang, et al. Initial assessment of signal-in-space availability for BDS[J]. Journal of Geomatics, 2015, 40(6): 22–24 (in Chineses [Google Scholar]
- LU Y, PENG Z G, ALICEA M, et al. How reliable is satellite navigation for aviation checking availability properties with probabilistic verification[J]. Reliability Engineering and System Safety, 2015, 144(12): 95–116 [Google Scholar]
- HOU Hongtao. Multi-hiberarchy based availbility analysis method for global navigation satellite system[D]. Changsha: National University of Defense Technology, 2015 (in Chinese) [Google Scholar]
- EREAU J F, SALEMAN M. Modeling and simulation of a satellite constellation based on Petri nets[C]//International Symposium on Reliability and Maintain Ability Symposium, 1996: 66-72 [Google Scholar]
- WANG Xuyu, HU Min, ZHANG Xueyang, et al. Analysis and evaluation method of navigation satellite constellation backup strategy based on Petri net[J]. Systems Engineering and Flectronics, 2021, 43(2): 434–442 (in Chinese) [Google Scholar]
- HOU Hongtao, XIE Fei, ZHANG Wangxun, et al. Availability analysis for constellation of GNSS based on Markov process[J]. Systems Engineering and Flectronics, 2014, 36(4): 685–690 (in Chinese) [Google Scholar]
- WANG Ershen, ZHANG Qing, QU Pingping, et al. GNSS constellation availability evaluation method based on Markov chain[J]. Systems Engineering and Flectronics, 2017, 39(4): 814–820 (in Chinese) [Google Scholar]
- VALDEZ-FLORES C, FELDMAN R M. A survey of preventive maintenance models for stochastically deteriorating single-unit system[J]. Naval Research Logistics, 1989, 36(4): 419–446 [Article] [Google Scholar]
- KELLEY C, DESSOUKY M. Minimizing the cost of availability of coverage from a constellation of satellites: evaluation of optimization methods[J]. Systems Engineering, 2004, 7(2): 113–122 [Article] [Google Scholar]
- PENG Z, LU Y, MILLER A, et al. Formal specification and quantitative analysis of a constellation of navigation satellites[J]. Quality and Reliability Engineering International, 2016, 32(2): 345–361 [Article] [Google Scholar]
- KWIATKOWSKA M, NORMAN G, PARKER D. PRISM: probabilistic model checking for performance and reliability analysis[J]. ACM SIGMETRICS Performance Evaluation Review, 2009, 36(4): 40–45 [Article] [Google Scholar]
- DISHON M, WEISS G H. A communications satellite replenishment policy[J]. Technometrics, 1966, 8(3): 399–409 [Article] [Google Scholar]
- JAKOB P C M, SHIMIZU S, YOSHIKAWA S, et al. Optimal satellite constellation spare strategy using multi-echelon inventory control[J]. Journal of Spacecraft and Rockets, 2019, 56(5): 1449–1461 [Article] [Google Scholar]
- LUO Tiansu, ZHAO Lingfeng, FENG Yunwen, et al. Super large-scale satellite constellation multi-level backup strategybased on METRIC theory[J]. Systems Engineering and Flectronics, 2022, 44(7): 2181–2190 (in Chinese) [Google Scholar]
- COLLOPY P. Assigning value to reliability in satellite constellations[C]//AIAA Space 2003 Conference & Exposition, 2003 [Google Scholar]
- ZHANG Yulin, FAN Li, ZHANG Yan, et al. Satellite constellation theory and design[M]. Beijing: Science Press, 2008: 180–187 (in Chinese) [Google Scholar]
- LIU Jiaxing, CUI Xiaozhun, DONG Haiqing, et al. A backup method for navigation constellation satellites: CN, 201110337755.7[P]. 2023-07-02 (in Chinese) [Google Scholar]
- KELLEY C W. GPS constellation state probabilities, historical and projected[C]//Proceedings of the 1999 National Technical Meeting of the Institute of Navigation, San Diego, 1999: 265-270 [Google Scholar]
- OCHIENG W Y, SHERIDAN K F, SAUER K, et al. An assessment of the RAIM performance of a combined Galileo/GPS navigation system using the marginally detectable errors(MDE) algorithm[J]. GPS Solutions, 2002, 5(3): 42–51 [Article] [Google Scholar]
- CAO Jinhua, CHENG Kan. Introduction to mathematical reliability[M]. Beijing: Higher Education Press, 2012: 182–222 (in Chinese) [Google Scholar]
- SONIA M, NIKOLAOS L, PIERRE D. Reliability of maintained systems under a semi-Markov setting[J]. Reliability Engineering and System Safety, 2014, 131(3): 282–290 [Google Scholar]
- HU Min, SONG Xumin, YANG Xuerong. Research on spare strategy of Walker navigation constellation based on Petri net[J]. Spacecraft Engineering, 2017, 26(2): 14–21 (in Chinese) [Google Scholar]
- LU Weiming, LIN Chuang. Petri net model of production system[J]. Acta Automatica Sinica, 19933): 290–299 (in Chinese) [Google Scholar]
- CAI Hongliang, LI Xing. Weakness analysis of navigation constellation based onservice availability[C]//Proceedings of the 5th China Sateuite Novigation Conference, 2014 (in Chinese) [Google Scholar]
- WALKER J G. Satellite constellations[J]. Journal of British Interplanetary Society, 1984, 37559–571 [Google Scholar]
- YANG Zhuopeng, ZHENG Heng, JIAO Shuyuan, et al. A system effectiveness modeling and analysis method of single navigation satellite[J]. Journal of Astronautics, 2017, 38(6): 647–654 (in Chinese) [Google Scholar]
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