Browse > Article
http://dx.doi.org/10.7840/kics.2016.41.12.1861

SBAS Non-Standard Data Transmission Method for Korea Augmentation Satellite System Applications  

Park, Jae-ik (Lunar Exploration System Team, Korea Aerospace Research Institute)
Lee, Eunsung (Satellite Navigation Team, Korea Aerospace Research Institute)
Heo, Moon-beom (Satellite Navigation Team, Korea Aerospace Research Institute)
Nam, Gi-wook (SBAS Program Office/Satellite Navigation.Application Technology R&D Center, Korea Aerospace Research Institute)
Abstract
Korea augmentation satellite system (KASS), which is a satellite-based augmentation system tailored for Korea, was launched for development in 2014. SBAS is a standard for aviation but it can also be utilized in non-aviation applications. The type and content of transmitted in SBAS data format are restricted. In order to utilize SBAS in fields that require the precision within centimeters, additional information has to be transmitted. It is important that data transmitted in nonstandard SBAS data not affect any operation of SBAS equipment. In this paper, we propose a non-standard SBAS data transmission method applicable to non-aviation applications that does not affect aviation SBAS receivers.
Keywords
Satellite Based Augmentation System; Korea Augmentation Satellite System; Data Transmission; Non-aviation Applications;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 NSTB/WAAS T&E Team, WAAS Performance Analysis Report #57, Retrieved Jul., 15, 2016, from http://www.nstb.tc.faa.gov/reports/waaspan57.pdf
2 J.-I. Park, E. S. Lee, M.-B. Heo, and G.-W. Nam, "Latest technology trending for satellite based augmentation system," Current Ind. and Technol. Trends in Aerospace, vol. 14, no. 1, pp. 191-202, Jul. 2016.
3 J.-I. Park, E. S. Lee, M.-B. Heo, and G.-W. Nam, "Study on technical standard of aviation GNSS for SBAS performance based navigation," J. Advanced Navig. Technol., vol. 20, no. 4, Aug. 2016.
4 KASS Program Office, What is SBAS Program, Retrieved Aug. 30, 2016, from http://www.kass.re.kr.
5 ICAO, International Standards and Recommended Practices (SARPs) Annex 10-Aeronautical Telecommunications Vol. I, Radio Navigation Aids, International Civil Aviation Organization, 6th Ed., Jul. 2006.
6 RTCA SC-159, DO-229D with Change 1 Minimum Operational Performance Standards for Global Positioning System/Satellite-Based Augmentation System Airborne Equipment, RTCA Inc., Feb. 2013.
7 D.-H. Han, H. Yoon, and C.-D. Kee, "A study of message scheduling algorithm for wide area differential GNSS considering international standard," J. Advanced Navig. Technol., vol. 15, no. 4, pp. 517-522, Aug. 2011.
8 T. Sakai and T. Aso, "Evaluation of the shortened preamble for SBAS message," J. Inst. Positioning, Navig. and Timing of Japan, vol. 15, no. 2, pp. 7-11, 2015.
9 M. M. M. Tossaint, J. C. De Mateo, P. D. F. Da Silva, and J. Ventura-Traveset, "Verification techniques for the assessment of SBAS integrity performances: a detailed analysis using both ESTB and WAAS broadcast signals," GNSS 2002, Copenhagen, Denmark, May 2002.
10 J. K. Wolf and R. D. Blakeney II, "An exact evaluation of the probability of undetected error for certain shortened binary CRC codes," MILCOM '88, vol. I, paper 15-2, pp. 287-292, Washington, D.C, 1988.
11 G. Castagnoli, S. Brauer, and M. Herrmann, "Optimization of cyclic redundancy-check codes with 24 and 32 parity bits," IEEE Trans. Commun., vol. 41, no. 6, pp. 883-892, Jun. 1993.   DOI