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Distributed turbo codes with multiple-relays and multi-receive antennas at the destination for non-line of sight source-destination link with unknown CSI

机译:在与未知CSI的非视线源 - 目标链路的目的地的多继电器和多接收天线的分布式Turbo代码与未知CSI

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This paper presents the half-duplex coded-cooperative scheme for non-line of sight communication systems. Multiple-relays are divided in two groups which are frequency division multiplexed and participate in coded-cooperation. Antenna array is used at the destination to obtain multi-receive diversity. Maximal ratio combining (MRC) is used at the destination to combine the signals transmitted at different relays. Rician fading channel is assumed among all the communication nodes. Moreover, channel state information (CSI) is assumed unknown at the destination. The unknown CSI is estimated using adaptive Spatio-temporal recursive least squares (ST-RLS) algorithm. Turbo codes are utilized to provide coded-cooperative diversity and joint iterative decoding scheme is utilized at the destination. The overall end-to-end bit error rate (BER) performance of the coded-cooperative scheme is analyzed with the help of Monte-Carlo simulations. The numerical simulations show that the proposed scheme provides coded-cooperative diversity, multi-receive diversity and clearly outperforms the non-cooperative transmission scheme under the identical conditions.
机译:本文介绍了非线性视线通信系统的半双工编码协作方案。多继电器分为两组,该组是频分复用并参与编码合作。天线阵列用于目的地以获得多接收分集。最大比率组合(MRC)用于目的地以组合在不同继电器发送的信号。所有通信节点中都假设瑞典衰落频道。此外,在目的地假设频道状态信息(CSI)是未知的。使用自适应时空递归最小二乘(ST-RLS)算法估计未知的CSI。利用Turbo代码来提供编码协作的分集,并且在目的地使用联合迭代解码方案。在Monte-Carlo模拟的帮助下,分析了编码协作方案的总端到端误码率(BER)性能。数值模拟表明,该方案提供了编码合作的多样性,多接收多样性,并且在相同条件下显然优于非协作传输方案。

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