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Iterative Multiple Symbol Differential Detection for Turbo Coded Differential Unitary Space-Time Modulation

机译:Turbo编码差分Unit时空调制的迭代多符号差分检测

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In this paper, an iterative multiple symbol differential detection for turbo coded differential unitary space-time modulation using a posteriori probability (APP) demodulator is investigated. Two approaches of different complexity based on linear prediction are presented to utilize the temporal correlation of fading for the APP demodulator. The first approach intends to take account of all possible previous symbols for linear prediction, thus requiring an increase of the number of trellis states of the APP demodulator. In contrast, the second approach applies Viterbi algorithm to assist the APP demodulator in estimating the previous symbols, hence allowing much reduced decoding complexity. These two approaches are found to provide a trade-off between performance and complexity. It is shown through simulation that both approaches can offer significant BER performance improvement over the conventional differential detection under both correlated slow and fast Rayleigh flat-fading channels. In addition, when comparing the first approach to a modified bit-interleaved turbo coded differential space-time modulation counterpart of comparable decoding complexity, the proposed decoding structure can offer performance gain over 3 dB at BER of 10~(-5).
机译:本文研究了使用后验概率(APP)解调器的Turbo编码差分differential时空调制的迭代多符号差分检测。提出了两种基于线性预测的不同复杂度的方法,以将衰落的时间相关性用于APP解调器。第一种方法旨在考虑所有可能的先前符号以进行线性预测,因此需要增加APP解调器的网格状态数量。相反,第二种方法应用维特比算法来辅助APP解调器估计先前的符号,从而大大降低了解码复杂度。发现这两种方法可以在性能和复杂性之间进行权衡。通过仿真显示,在相关的慢速和快速瑞利平坦衰落信道下,这两种方法都可以提供比常规差分检测明显的BER性能改善。另外,当将第一种方法与具有可比的解码复杂度的改进的比特交织涡轮编码差分时空调制对应物进行比较时,所提出的解码结构可以在10〜(-5)的BER下提供超过3 dB的性能增益。

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