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Adaptive Turbo Trellis Coded Modulation Aided Distributed Space-Time Trellis Coding for Cooperative Communications

机译:自适应Turbo网格编码调制辅助分布式时空网格编码,用于合作通信

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In this contribution, we propose an adaptive Turbo Trellis Coded Modulation (TTCM) aided Distributed Space-Time Trellis Coding (STTC) scheme for cooperative communication over quasi-static Rayleigh fading channels. An adaptive TTCM (ATTCM) scheme is employed by the source node during the first transmission period for reliably conveying the source bits to N number of relay nodes by appropriately adjusting the code-rate and modulation mode according to the near-instantaneous channel condition. The TTCM switching thresholds are chosen to ensure that the Bit Error Ratio (BER) at each relay node becomes lower than 10~(-6) in order to minimise the potential error propagation imposed by the relay nodes. During the second transmission period, an TV-antenna assisted Distributed STTC (DSTTC) scheme is created with the aid of the aforementioned N single-antenna relay nodes. More specifically, the N relay nodes are utilised to form STTC codewords based on the re-encoded TTCM symbols of the relays for transmission to the destination node. At the destination node, iterative extrinsic information exchange is performed between the STTC and TTCM decoders for recovering the original source bits. It is shown that the proposed ATTCM-DSTTC scheme requires 12 dBs less transmission power in comparison to a standard TTCM scheme when aiming for a frame error ratio of 10~(-3).
机译:在这一贡献中,我们提出了一种自适应Turbo网格编码的调制(TTCM)辅助分布的时空网格编码(STTC)方案,用于通过准静态瑞利衰落通道的协同通信。源节点在第一发送时段期间采用自适应TTCM(ATTCM)方案,用于通过根据近瞬时信道条件适当地调整码率和调制模式来可靠地将源位传送到N个中继节点。选择TTCM切换阈值以确保每个继电器节点处的误码比(BER)变为低于10〜(-6),以便最小化继电器节点施加的电位误差传播。在第二传输时段期间,借助于上述N单天线中继节点创建电视天线辅助分布式STTC(DSTTC)方案。更具体地,N中继节点用于基于中继的重新编码的TTCM符号来形成STTC码字,用于传输到目的地节点。在目的节点处,在STTC和TTCM解码器之间执行迭代外在信息交换,用于恢复原始源位。结果表明,当帧误差比为10〜(3)时,所提出的ATTCM-DSTTC方案需要更低的传输功率,相当于标准TTCM方案。

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