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Performance of rateless codes in half-duplex collaborative relay networks

机译:半双工协作中继网络中无速率代码的性能

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Cooperative communications, where parallel relays forward information to a destination node, can greatly improve the energy efficiency and latency in ad-hoc networks. Communications using rateless codes, in which the source transmits an infinite number of parity bits to the destination until the receipt of an acknowledgement, provides a natural and efficient mechanism for accumulating information from multiple transmitting relays. One decode-and-forward protocol and one amplify-and-forward protocol both based on rateless codes are studied in this paper. The impact of the half-duplex constraint on the throughput of the system using rateless codes to harness spatial diversity and efficiently transmit information from a source to a destination is analyzed in our paper. Specially, the direct path from source to destination in a free-space path loss and small-scale Rayleigh environment is considered, which is often ignored in many other papers. Simulations show that the decode-and-forward protocol works more efficiently than the amplify-and-forward protocol.
机译:在并行中继将信息转发到目标节点的协作通信中,可以大大提高自组织网络的能效和延迟。使用无速率码的通信(其中源将无限数量的奇偶校验位发送到目的地,直到收到确认为止)提供了一种自然而有效的机制,用于累积来自多个发送中继的信息。本文研究了一种基于无速率码的解码转发协议和一种放大转发协议。在本文中分析了半双工约束对使用无速率代码利用空间分集并有效地将信息从源传输到目的地的系统吞吐量的影响。特别地,考虑了在自由空间路径损耗和小范围瑞利环境中从源到目的地的直接路径,这在许多其他论文中经常被忽略。仿真表明,解码转发协议比放大转发协议更有效地工作。

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