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http://dx.doi.org/10.5140/JASS.2014.31.3.235

Communications Link Design and Analysis of the NEXTSat-1 for SoH File and Mission Data Using CAN Bus, UART and SerDesLVDS  

Shin, Goo-Hwan (Satellite Technology Research Center, Korea Advanced Institute of Science and Technology)
Chae, Jang-Soo (Satellite Technology Research Center, Korea Advanced Institute of Science and Technology)
Min, Kyung-Wook (Department of Physics, Korea Advanced Institute of Science and Technology)
Sohn, Jong-Dae (Department of Physics, Korea Advanced Institute of Science and Technology)
Jeong, Woong-Seob (Korea Astronomy and Space Science Institute)
Lee, Dae-Hee (Korea Astronomy and Space Science Institute)
Publication Information
Journal of Astronomy and Space Sciences / v.31, no.3, 2014 , pp. 235-240 More about this Journal
Abstract
The communications link in a space program is a crucial point for upgrading its performance by handling data between spacecraft bus and payloads, because spacecraft's missions are related to the data handling mechanism using communications ports such as a controlled area network bus (CAN Bus) and a universal asynchronous receiver and transmitter (UART). The NEXTSat-1 has a lot of communications ports for performing science and technology missions. However, the top level system requirements for the NEXTSat-1 are mass and volume limitations. Normally, the communications for units shall be conducted by using point to point link which require more mass and volume to interconnect. Thus, our approach for the novel communications link in the NEXTSat-1 program is to use CAN and serializer and deserializer low voltage differential signal (SerDesLVDS) to meet the system requirements of mass and volume. The CAN Bus and SerDesLVDS were confirmed by using already defined communications link for our missions in the NEXTSat-1 program and the analysis results were reported in this study in view of data flow and size analysis.
Keywords
next generation small satellite-1; communications link; controlled area network; universal asynchronous receiver and transmitter; serializer and deserializer low voltage differential signal;
Citations & Related Records
Times Cited By KSCI : 2  (Citation Analysis)
연도 인용수 순위
1 Shin GH, Mission and System Requirements Document, KAIST Satellite Technology Research Center Technical Document, SaTReC/NS1-2013-D0-210-001(2013)
2 Oh JH, Lim JT, Throughput Improvement in Wireless Multi-Hop Ad-Hoc Networks Using Load Control, IEICE, E92-B, 314-317(2009)   DOI
3 Song WG, Lim JT, Channel Estimation and Signal Detection for MIMO-OFDM with Time Varying Channels, IEEE, 10, 540-542(2006)
4 Lee HJ, Lim JT, Improving Playout Rate of Streaming Service with Power Efficiency over Wireless Multihop Networks, IET, 5, 1295-1302(2011)   DOI
5 Shin GH, Seo JK, Park HY, Ryu KS, Lee I, et al., Measurement of Change in Properties of PCB for the Irradiation of Co-60 Gamma-ray for Space Application of CCGA484 Daisy Chain FPGA Device, JKPS, 63, 1451-1454 (2013). http://dx.doi.org/10.3938/jkps.63.1451   DOI
6 Sohn JD, Oh SY, Yi Y, Min KW, Lee DY, et al., A Design of Solar Proton Telescope for Next Generation Small Satellite, JASS, 29, 343-349 (2012). http://dx.doi.org/10.5140/JASS.2012.29.4.343   과학기술학회마을   DOI   ScienceOn
7 TI Data Sheet, SN65LVDS95 LVDS SERDES Transmitter, 1-14(2002)
8 Shin GH, K. Ryu KS, Myung NH, et al., TID Effect Test of the ICS307GI-03LF Serially Programmable Clock Source for Space Applications, JKPS, 59, 670-673(2011)   DOI   ScienceOn