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Joint iterative channel estimation and decoding for bit-interleaved coded modulation over correlated fading channels

机译:相关衰落信道上比特交织编码调制的联合迭代信道估计和解码

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摘要

We design and evaluate a novel and highly efficient algorithm, named sparsely interleaved estimation and decoding (SIED), for joint iterative channel estimation and decoding for bit-interleaved coded modulation (BICM) over flat correlated fading channels. In SIED, in order to effectively prevent error propagation, the decoding proceeds until the current decoder stage converges, and only then feeds back the best achievable decoding results to refine channel estimates. The on-line convergence is detected through the soft decoding metrics (SDMs). Further, we provide a unified analytic framework for both the choice of filter length and an asymptotic bit error rate (BER) analysis, where the key parameter is the power correlation coefficient between the fading and its estimate. Simulation results verify that our SIED algorithm can successfully break the barrier of the channel estimation error caused by conventional pilot symbol-assisted modulation (PSAM), and lead the BER to approach the ideal asymptotic performance. Compared to the classical iteratively filtered PSAM (IF-PSAM) algorithm, our proposed SIED algorithm has more than 0.5-dB improvement in E/sub b//N/sub 0/ for the normalized fade rate f/sub d/T/sub s/=0.05 with much lower complexity.
机译:我们设计和评估了一种新颖且高效的算法,称为稀疏交错估计和解码(SIED),用于在平坦相关衰落信道上联合迭代信道估计和解码,用于比特交错编码调制(BICM)。在SIED中,为了有效地防止错误传播,解码将继续进行直到当前解码器阶段收敛为止,然后才反馈最佳可实现的解码结果以细化信道估计。通过软解码指标(SDM)检测在线收敛。此外,我们为滤波器长度的选择和渐进误码率(BER)分析提供了统一的分析框架,其中关键参数是衰落与其估计之间的功率相关系数。仿真结果证明,我们的SIED算法可以成功突破常规导频符号辅助调制(PSAM)引起的信道估计误差的障碍,并使BER达到理想的渐近性能。与经典的迭代滤波PSAM(IF-PSAM)算法相比,我们提出的SIED算法在归一化衰落率f / sub d / T / sub的E / sub b // N / sub 0 /方面提高了0.5-dB以上s / = 0.05,复杂度低得多。

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