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V-BLAST BASED LDPC-CODED RELAY COOPERATION

机译:基于V-BLAST的LDPC编码的中继合作

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摘要

An efficient LDPC-coded multi-relay cooperation architecture is proposed based on virtual vertical Bell Labs layered space-time (V-BLAST ) processing for uplink communication ,where minimum-mean-square-error (MMSE) and BP-based joint iterative decoding based on the introduced multi-layer Tanner graph are effectively de-signed to detect and decode the corrupted received sequence at the destination .By introducing V-BLAST transmis-sion to the coded multi-relay cooperation ,relays send their streams of symbols simultaneously ,which increases the data rate and significantly reduces the transmission delay .The theoretical analysis and numerical results show that the new LDPC coded cooperation scheme outperforms the coded non-cooperation under the same code rate ,and it also achieves a good trade-off among the performance ,signal delay ,and the encoding complexity associated with the number of relays .The performance gain can be credited to the proposed V-BLAST processing architecture and BP-based joint iterative decoding by the introduced multi-layer Tanner graph at a receiver-side .
机译:提出了一种基于虚拟垂直贝尔实验室分层空时(V-BLAST)处理的上行链路通信的高效LDPC编码多中继协作架构,其中最小均方误差(MMSE)和基于BP的联合迭代解码在引入的多层Tanner图的基础上,有效地进行了设计,以检测和解码目标位置的损坏接收序列。通过将V-BLAST传输引入编码的多中继协作中,中继同时发送其符号流,理论分析和数值结果表明,新的LDPC编码合作方案在相同编码率下优于非编码合作,并在性能之间取得了良好的权衡。 ,信号延迟以及与中继数量相关的编码复杂性。性能增益可以归功于所提出的V-BLAST处理架构和BP接收器侧引入的多层Tanner图进行基于的联合迭代解码。

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