Iterative Differential Unitary Space-Frequency Decoding for Multiband-OFDM UWB Communication Systems

Xiufeng Jin, G. Bi, Haiyong Xiao
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Abstract

Recently, noncoherent UWB radios have generated increasing interest among researchers due to the advantage of not requiring channel state information (CSI) at both transmitter and receiver. However, the trade-off is a penalty of approximately 3 dB in the required SNR compare to the coherent case. In order to overcome the gap, in this paper, we propose a differential encoding and decoding scheme for multiband UWB systems. The proposed scheme employs the parallel concatenation of two differential unitary space-frequency encoders at the transmitter and performs a simple soft decision iterative decoding at the receiver. Simulation results show that the proposed scheme can outperform the conventional differential and coherent detection at high SNR with few number of iterations
多频带ofdm超宽带通信系统的迭代差分酉空频译码
近年来,非相干超宽带无线电由于不需要发送端和接收端的信道状态信息(CSI)而引起了研究人员越来越多的兴趣。然而,与相干情况相比,在所需的信噪比中,权衡是大约3 dB的损失。为了克服这一缺陷,本文提出了一种多波段超宽带系统的差分编解码方案。该方案在发送端采用两个差分酉空频编码器并行连接,在接收端进行简单的软判决迭代译码。仿真结果表明,该方法在高信噪比条件下优于传统的差分和相干检测,且迭代次数少
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