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Noncoherent Diagonal Distributed Space-Time Block Codes for Amplify-And-Forward Half-Duplex Cooperative Relay Channels

机译:非相干对角分布式时空分组码,用于转发正向半双工协作中继信道

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摘要

In this paper, we consider a noncoherent amplify-and-forward (AF) half-duplex cooperative relay system, where the channel gains are completely unknown at the destination. For such a system, the currently available design of noncoherent unitary space-time block codes for the multiple-input—multiple-output (MIMO) systems cannot be applied because of the signal matrix having a certain triangular structure. In this paper, we propose the design of full-diversity nonunitary and unitary diagonal distributed space-time block codes for the noncoherent AF half-duplex protocol. We prove that both the nonunitary and unitary codes enable the unique identification of the channel and transmitted signals in the noise-free case for any given nonzero received signals, as well as full noncoherent diversity in the noise case for the least square error (LSE) receiver. Computer simulations show that our unitary code obtains about 5-dB signal-to-noise-ratio (SNR) gains at the symbol error rate of $10^{-5}$ over the precoded training scheme and the differential coding scheme.
机译:在本文中,我们考虑了一种非相干放大转发(AF)半双工协作中继系统,其中在目的地的信道增益完全未知。对于这样的系统,由于信号矩阵具有一定的三角形结构,因此无法应用用于多输入多输出(MIMO)系统的非相干unit时空分组码的当前可用设计。在本文中,我们提出了针对非相干AF半双工协议的全分集非unit和and对角线分布的时空分组码的设计。我们证明,非unit和ary编码都可以在无噪声情况下对任何给定的非零接收信号进行信道和发射信号的唯一标识,以及在噪声情况下针对最小平方误差(LSE)的完全非相干分集接收器。计算机仿真表明,我们的单一代码在 $ 10 ^ {-5的符号错误率下,获得了约5dB的信噪比(SNR)增益。 } $ 应用于预编码的训练方案和差分编码方案。

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