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SNR估计误差对BICM-ID系统性能影响的研究

邹雪兰 酆广增

邹雪兰, 酆广增. SNR估计误差对BICM-ID系统性能影响的研究[J]. 电子与信息学报, 2008, 30(5): 1151-1154. doi: 10.3724/SP.J.1146.2007.01231
引用本文: 邹雪兰, 酆广增. SNR估计误差对BICM-ID系统性能影响的研究[J]. 电子与信息学报, 2008, 30(5): 1151-1154. doi: 10.3724/SP.J.1146.2007.01231
Zou Xue-lan, Feng Guang-zeng. Study of the Performance Sensitivity to SNR Mismatch in BICM-ID System[J]. Journal of Electronics & Information Technology, 2008, 30(5): 1151-1154. doi: 10.3724/SP.J.1146.2007.01231
Citation: Zou Xue-lan, Feng Guang-zeng. Study of the Performance Sensitivity to SNR Mismatch in BICM-ID System[J]. Journal of Electronics & Information Technology, 2008, 30(5): 1151-1154. doi: 10.3724/SP.J.1146.2007.01231

SNR估计误差对BICM-ID系统性能影响的研究

doi: 10.3724/SP.J.1146.2007.01231
基金项目: 

国家自然科学基金(60472104)资助课题

Study of the Performance Sensitivity to SNR Mismatch in BICM-ID System

  • 摘要: 在BICM-ID(Bit-Interleaved Coded Modulation with Iterative Decoding,BICM-ID)系统或其他级联码系统中实现迭代检测接收机需要对信道的信噪比(SNR)进行估计。该文研究信噪比估计误差对BICM-ID系统性能的影响,分析各种译码算法对信噪比估计误差的敏感程度。理论分析和仿真结果表明max-log-APP算法对信噪比估计具有最好的鲁棒性,log-APP及其他简化算法对SNR估计误差的鲁棒性在SNR过估计时比SNR欠估计时好,原因在于各个算法所采用的修正函数不同。满足算法性能没有大的损失的SNR估计误差精度范围随着信道条件的改善而增大,通常在-2dB到+6dB之间。因此在非理想的信道状态信息条件下,max-log-APP算法是BICM-ID系统的最佳译码算法。
  • Li X, Chindapol A, and Ritcey J A. Bit-interleaved codedmodulation with iterative decoding and 8PSK signaling[J].IEEE Trans. on Commun.2002, 50(8):1250-1257[2]Chindapol A and Ritcey J A. Design, analysis, andperformance evaluation for BICM-ID with square QAMconstellations in Rayleigh fading channels[J].IEEE Journal onSelected Areas in Communications.2001, 19(5):944-957[3]Jordan M A and Michols R A. The effects of channelcharacterization on turbo code performance[J].Proc. Milcom96,McLean, VA, Oct.1996, 1:17-21[4]Summer T A and Wilson S G. SNR mismatch and onlineestimation in turbo decoding[J].IEEE Trans. on Commun.1998, 46(4):421-423[5]Cheng J F and Ottosson T. Linearly approximated log-MAPalgorithms for Turbo coding. Proc. IEEE Veh. Tech. Conf.(VTC), Houston, TX, May 2000: 2252-2256.[6]Zhou Z D and Vucetic B. Adaptive bit-interleaved codedmodulation in MIMO systems using outdated CSI[J].IEEEICC06, Istanbul, Turkey, June.2006, 11:5028-5033[7]Tran N H, Nguyes H H, and Le-Ngoc T. Bit-interleaved codedOFDM with signal space diversity: subcarrier grouping androtation matrix design[J].IEEE Trans. on Signal Processing.2007, 55(3):1137-1149[8]Djordjevic I B, Cvijetic M, and Xu L, et al.. Proposal forbeyond 100-Gb/s optical transmission based on bitinterleavedLDPC-coded modulation[J].IEEE PhotonicsTechnology Lett.2007, 19(12):874-876[9]Robertson P, Villebrun E, and Hoeher P. A comparison ofoptimal and sub-optimal MAP decoding algorithmsoperating in the log domain[J].Proc. IEEE Int. Conf.Commun. 95 (ICC95), Seattle, USA, June.1995, 2:1009-1013[10]Gross W J and Gulak P G. Simplified MAP algorithmsuitable for implementation of turbo decoders. ElectronicsLett., 1998, 34(16): 1577-1578.[11]Zou X L and Feng G Z. A modified max-log-MAP algorithmfor turbo decoding. Journal of China University of Posts andTelecommunications, 2002, 9(1): 7-12.[12]Benedetto S, Divsalar D, and Monrorsi G, et al.. A soft-inputsoft-output APP modules for iterative decoding ofconcatenated codes[J].IEEE Commun. Letters.1997, 1(1):22-24[13]Schreckenbach F, Gortz N, and Hagenauer J, et al..Optimization of symbol mappings for bit-interleaved codedmodulation with iterative decoding[J].IEEE Commun. Lett.2003, 7(12):593-595[14]Viterbi A J. An intuitive justification and a simplifiedimplementation of the MAP decoder for convolutional codes[J].IEEE Journal on Selected Areas in Communications.1998, 16(2):260-264
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出版历程
  • 收稿日期:  2007-07-25
  • 修回日期:  2007-12-12
  • 刊出日期:  2008-05-19

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