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Iterative Decoding and Despreading improves CDMA-Systems using M-ary Orthogonal Modulation and FEC

机译:迭代解码和解扩使用M元正交调制和FEC改善了CDMA系统

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Iterative decoding is applied to code division multiple access (CDMA) systems with two-stage serial concatenated channel coding. For a direct sequence (DS) CDMA system like in the uplink of the standard IS-95(A) using M-ary orthogonal modulation (inner code) and an outer convolutional code with interleaving we give the optimum symbol-by-symbol maximum a posteriori (MAP) decoding rules for the inner block code in a coherent and noncoherent receiver design. Further suggestions for suboptimum MAP decoders with lower complexity are made. The inner decoding rule is extended to use a priori information for the systematic bits, which is delivered from the outer decoding stage. These algorithms are essential for iterative decoding of the system. Simulation results show a decoding gain of about 0.6 dB for a bit error rate (BER) of 10-3 by replacing the maximum likelihood (ML) decoder for the inner code by a MAP decoder. A total gain of about 1.2 dB is achieved by the use of iterative decoding after only three to five iterations.
机译:迭代解码应用于具有两级串行级联信道编码的码分多址(CDMA)系统。对于直接序列(DS)CDMA系统,例如在标准IS-95(A)的上行链路中,使用M元正交调制(内部代码)和外部卷积代码并进行交织,我们给出了最优的逐个符号最大值a在相干和非相干接收器设计中,内部块代码的后验(MAP)解码规则。对具有较低复杂度的次优MAP解码器提出了进一步的建议。内部解码规则被扩展为使用从外部解码阶段传递来的系统比特的先验信息。这些算法对于系统的迭代解码至关重要。仿真结果显示,通过使用MAP解码器替换内部代码的最大似然(ML)解码器,对于10-3的误码率(BER),解码增益约为0.6 dB。仅在三到五次迭代后使用迭代解码即可获得约1.2 dB的总增益。

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