Optimized Channel Coding of Control Channels for Mobile Packet Communication

  • Song, Young-Joon (Dept. of Electronic Engineering, Kum-Oh Nat′l Institute of Tech.)
  • 발행 : 2003.05.01

초록

This paper proposes a coding scheme of control channel for mobile packet communication to maximize the minimum Hamming distance, which is based on shifting of basis vectors of Reed Muller code with optimized dynamic puncturing and/or(partial) sequence repetition. Since the maximum likelihood decoding can be performed using the extremely simple FHT(Fast Hadamard Transformation), it is suitable for real time optimum decoding of control channel information with very little complexity. We show applications of the proposed coding method to TFCI(Transport Format Combination Indicator) code in split and normal modes of 3GPP W-CDMA system. We also discuss how this method can reduce rate indication error over AWGN(Additive White Gaussian Noise) as well as fading channels when the proposed coding scheme is applied to 1xEV-DV system of $3^{rd}$TEX> generation partnership project 2(3GPP2) to indicate the data rate transmitted on the reverse traffic channel by a Mobile Station(MS).

키워드

참고문헌

  1. 3GPP
  2. Developing the next generation of cdma2000 wireless communications
  3. 3GPP TS 25 Series
  4. 3GPP2 C.S000 Series
  5. WCDMA for UMTS(2nd edition) Harri Holma;Antti Toskala
  6. W-CDMA Mobile Communications System Keiji Tachikawa
  7. IS-95 CDMA and cdma2000 Vijay K.Garg
  8. Error control systems for digital communication and storage S.B.Wicker
  9. Orthogonal Transforms for Digital Signal Processing N.Ahmed;K.Rao
  10. 3G TS 25.212, V3.8.0 3GPP TSG RAN; Multiplexing and channel coding (FDD)
  11. 3G TS 25.211, V3.9.0 3GPP TSG RAN; Physical channels and mapping of transport channels onto physical channels (FDD)
  12. EP 1104130 A2, European patent office, Application no. 00125148.7 Method for coding and transmitting transport format combination indicator Young Joon Song
  13. Updated Joint Physical Proposal for IxEV-DV, 3GPP2-C50-20010611-009 LG Electronics;LSI Logic;Lucent Technologies;Qualcomm Incorporated;Samsung Electronics
  14. IEEE Trans. Inform. Theory v.39 An Updated Table of Minimum-Distance Bounds for Binary Linear Codes A.E.Brouwer https://doi.org/10.1109/18.212301