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Volume 28 Issue 2
Aug.  2010
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Zhang Li-jun, Cao Zhi-gang, Li Victor O.K. . Syndrome-Based Type-I Hybrid ARQ and Its Performance Analysis[J]. Journal of Electronics & Information Technology, 2006, 28(2): 242-246.
Citation: Zhang Li-jun, Cao Zhi-gang, Li Victor O.K. . Syndrome-Based Type-I Hybrid ARQ and Its Performance Analysis[J]. Journal of Electronics & Information Technology, 2006, 28(2): 242-246.

Syndrome-Based Type-I Hybrid ARQ and Its Performance Analysis

  • Received Date: 2004-07-20
  • Rev Recd Date: 2005-03-07
  • Publish Date: 2006-02-19
  • A syndrome-based type-I Hybrid ARQ (HARQ) is proposed, where Reed-Solomon code is selected to be the FEC subsystem and the error-detection function is embedded ably in the decoding process. Analytical and simulation results of Bit Error Rate (BER) and throughput efficiency of the system show that syndrome-ahead and syndrome-behind structures are suited to short codes and long codes, respectively. By choosing the maximum of retransmission times, a perfect tradeoff can be obtained between the throughput efficiency and the reliability of the system.
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  • Lin S, Jr. Costello D J. Error Control Coding, 2nd Edition. New York: Prentice Hall, 2004, chapter 1.[2]Babich F, Valentinuzzi E, Vatta F. Performance of hybrid ARQ schemes for the LEO satellite channel. IEEE Global Telecommunications Conference (GLOBECOM'01), San Antonio, TX, USA, 2001: 27092713. .Li W, Law C L, Yang F. A HARQ scheme for combating burst-errors due to power control gaps in Ka-band LEO satellitesystems. IEEE Global Telecommunications Conference (GLOBECOM'01), San Antonio, TX, USA, 2001: 2703.2708.[3]Wicker S B. Reed-Solomon error control coding for Rayleigh fading channels with feedback[J].IEEE Trans. on Vehicular Tech.1992, 41(2):124-[4]Morelos-Zaragoza R H. The Art of Error Correcting Coding. John Wiley Sons Ltd., 2002: 4952. .[5]Zhang L J, Gao C Y, Cao Z G. Exact analysis of bit error rate of maximum-distance-separable codes. IEEE Global Telecommu- nications Conference(GLOBECOM'00), San Francisco, CA, USA, 2000: 816.819.[6]Lin S, Jr. Costello D J, aMiller M J. Automatic-repeat-request error-control schemes. IEEE Commun. Mag., 1984, 22(1): 5.17.[7]Jamali S H, Le-Ngoc T. Coded-Modulation Techniques for Fading Channels. Boston: Kluwer Academic Publishers, 1994: 277.278.
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