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A Novel Online Network Coding Scheme for Broadcast Channels with Imperfect Feedback and Decoding Delay Constraints

机译:具有不完善反馈和解码时延约束的广播信道在线网络编码新方案

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In a wireless broadcast channel, each packet is typically associated with a decoding delay constraint. Meeting the constraints of packets under the imperfect feedback is a challenging issue for any online network coding scheme. Thus motivated, in this paper, we investigate the throughput performance of the single-hop network with the decoding delay constraints and imperfect feedback, and have proposed an Upper Triangle Network Coding (UTNC) scheme. The proposed scheme has designed an upper triangular generation matrix G, based on which the original packets in the transmission queue are encoded by the sender and broadcast to multiple receivers. We have evaluated the throughput performance of the UTNC scheme with the different decoding delay constraints, feedback erasure probabilities and the number of receivers. Simulation results show that the proposed scheme has effectively accelerated the packet decoding and avoided the meaningless retransmission resulting from the imperfect feedback. More importantly, the UTNC scheme has achieved higher throughput compared with the conventional ARQ for network coding (ANC) scheme.
机译:在无线广播信道中,每个分组通常与解码延迟约束相关联。对于任何在线网络编码方案而言,在不完美的反馈下满足分组的约束是一个具有挑战性的问题。因此,在本文的激励下,我们研究了具有解码延迟约束和不完善反馈的单跳网络的吞吐性能,并提出了上三角网络编码(UTNC)方案。所提出的方案设计了上三角生成矩阵G,基于该生成矩阵G,传输队列中的原始分组被发送方编码并广播到多个接收方。我们评估了具有不同解码延迟约束,反馈擦除概率和接收器数量的UTNC方案的吞吐量性能。仿真结果表明,该方案有效地加快了包的解码速度,避免了反馈不完善导致的无意义的重传。更重要的是,与传统的网络编码ARQ方案相比,UTNC方案实现了更高的吞吐量。

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