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Tytuł artykułu

Lifetime performances of modernized GLONASS satellites: A review

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
GLONASS, successfully operating during 1990s became unusable by early 2000s. Following a revitalization and modernization plan since 2004, GLONASS constellation has been completed again by the end of 2011 and the use of GLONASS is gaining popularity. Because of the previous experience, some scepticism exists among the stakeholders in using GLONASS for reliable solution and application development. This paper critically reviews the operational lifespan of GLONASS satellites launched between 2004 and 2016, as this is an important contributor towards reliability and sustained operation of the system. For popularization and extracting full benefits of GLONASS as stand-alone system or as an active component of multi-GNSS, major issues of assuring the minimum sufficient GLONASS constellation (of 24…23 satellites), efficient design implementation and the modernized ground control segment development and operation need to be properly taken care of by the system operators.
Słowa kluczowe
Rocznik
Strony
87--97
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
  • Department of Physics, The University of Burdwan, Golapbag, Burdwan 713 104, India
autor
  • Department of Physics, The University of Burdwan, Golapbag, Burdwan 713 104, India
Bibliografia
  • Atkins William (2007), “Russian GLONASS plans to compete against (or with) U.S. GPS by 2009”, http://www.itwire.com.au/content/view/11187/1066/, accessed April 24, 2007.
  • Banerjee P., Bose A. and Dasgupta A. (2002), “The Usefulness of GLONASS for Positioning in the Presence of GPS in the Indian Subcontinent”, The Journal of Navigation, Vol. 55, No 3, 463-475.
  • Bose A., Sarkar S. and Banerjee P (2008), “GLONASS status on mid 2008 - an Indian view”, in Int. Symposium for GPS/ GNSS, Tokyo, Japan, Nov. 11-14.
  • Bose A., Sarkar S. and Banerjee P. (2010), “GLONASS Modernisation: Hopes and Reality”, presented in International Symposium for Certification GNSS Systems and Services (CARGEL 2010), Rostock, Germany, Apr. 2010.
  • Bose A., Sarkar S., Hazra K. and Banerjee P. (2012), “A review of GLONASS constellation modernization”, in Proc National Conference on Materials, Devices and Circuits for Communication Technology (MDCCT 2012), Burdwan, India, 128-131.
  • Federal Space Agency Information Analytical Centre (2004-2016), “GLONASS Constellation Status”, https://www.glonass-iac.ru/en/GLONASS, accessed 2004-2016.
  • GPS World, “Faulty Software Determined Cause of GLONASS Failures”, http://gpsworld.com/faulty-software-determined-cause-of-glonass-failures/ (2014), Accessed 26 April, 2014.
  • Gunning, Kazuma, Walter, Todd, Enge, Per, "Characterization of GLONASS Broadcast Clock and Ephemeris: Nominal Performance and Fault Trends for ARAIM," Proceedings of the 2017 International Technical Meeting of The Institute of Navigation, Monterey, California, January 2017, pp. 170-183.
  • Holmes D., Last A., and Basker S. (1998), “GLONASS System Performance”, in Proc ION GPS ‘98, Nashville, TN, USA, 1998, 1599-1603.
  • Kahvecioglu S. (2011), “GLONASS: History, state of the art and an outlook on future”, International Review of Aero-Space Engineering, Vol. 4, No 4, 228-239.
  • Langley R. B. (2011), “GLONASS Fully Operational, First Time in 15 Years”, fttp://www.gpsworld.com/gnss-system/news/ glonass-fully-operational-first-time-15- years-12379, accessed 8 December, 2011.
  • Langley R. B. (2017), “GLONASS: Past, Present and Future, an Alternative and Complement to GPS”, GPS World, November 2017, 44-49.
  • O’Driscoll C., Lachapelle G. and Tamazin A. (2011), “Combined GPS/GLONASS Receivers in Urban Environments”, GPS World, Vol 22, No 1, 51-58.
  • O Montenbruck, P Steigenberger, A Hauschild, Broadcast versus precise ephemerides: a multi-GNSS perspective - GPS Solutions, 2015, vol 19, 321-333.
  • Rooney E. and Last A. (1999), “GLONASS: As Good as it Should Be?”, presented in ION GPS’99, Nashville,TN, September 14-17.
  • RIA Novosti (2007a), “Putin makes Glonass navigation system free for customers - 1”, 18 May, 2007, http://en.rian.ru/science/20070518/65725503.html, 20 August, 2007.
  • RIA Novosti (2007b), “Russia allocates $380 million for Glonass in 2007”, 26 March 2007, http://en.rian.ru/russia/20070326/62619883.html, 20 August, 2007.
  • Russian system of differential correction and monitoring (SDCM) (2010-2016), “Current status of GLONASS constellation”, http://www.sdcm.ru/index_eng.html, accessed 2010-2016.
  • Shengyue J., Chen W., Ding X. and Chen Y. (2010), “Potential Benefits of GPS/GLONASS/GALILEO Integration in an Urban Canyon - Hong Kong”, The Journal of Navigation, Vol 63, No 4, 681-693.
  • Sarkar S. and Bose A. (2016a), “Studies on Solution Accuracy of GLONASS from India”, Gyroscopy and Navigation, Vol 7, No 1, 39-49.
  • Sarkar S. and Bose A. (2016b), “Lifetime of Revitalized GLONASS satellites: a Review”, in Proc. National Conference on Materials, Devices and Circuits for Communication Technology (MDCCT 2016), Burdwan, India, pp 173-176.
  • Ta T. H., Truong D. M., Nguyen T. T., Hieu T. T., Nguyen T. D. and Belforte G. (2013), “Multi-GNSS positioning campaign in South-East Asia”, Coordinates, Vol IX, Issue 11, 11-20.
  • University of New Brunswick (2004-2016), “GLONASS Constellation Status”, Geodesy and Geomatics Engineering, http://www2.unb.ca/gge/Resources/GLONASSConstellationStatus.txt, accessed 2004-2016.
  • Voice of Russia (2011), “Glonass-M sat fully operational”, http://english.ruvr.ru/2011/10/26/59382687.html, accessed 31 October, 2011.
  • Website of The affiliated branch “Precision Navigation and Ballistic Support” of OJSC, http://glonass-svoevp.ru
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2020).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-28cab30a-7297-4597-b253-59b85f8f8cd8
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