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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Encoded Packet-Assisted Retransmission for Multiple Unicast Flows in Wireless Networks
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Encoded Packet-Assisted Retransmission for Multiple Unicast Flows in Wireless Networks

机译:无线网络中多个单播流的编码分组辅助重传

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In this paper, we address the problem of reliable unicast transmission across wireless networks with a packet erasure channel. It has been proven that network coding (NC) can offer significant advantages over conventional approaches for this problem. However, existing NC schemes do not always fully exploit the potential of NC due to the lack of understanding of the use of the encoded packets that receivers cannot decode. To overcome this limitation, we propose an NC framework called encoded packet-assisted retransmission (EAR). EAR develops an improved opportunistic listening mechanism that allows receivers to store all heard undecodable NC packets and to report periodically the reception status to the sender. Thus, the sender can directly xor these encoded packets with other packets to take full advantage of all the available coding opportunities. We also formulate a packet-scheduling problem that aims at maximizing the utilization of coding opportunity in the network. By solving it, we design a simple and efficient scheduler that prioritizes packets according to their contribution to the overall transmission performance. Then, the sender determines a packet that should be transmit next and selects packets to be encoded, i.e., based on the priority class. In addition, we investigate the performance of our approach from a theoretical perspective. From simulation results, it is seen that EAR can significantly reduce the total number of retransmissions and provide more efficient bandwidth utilization compared with existing schemes.
机译:在本文中,我们解决了具有分组擦除信道的无线网络中可靠的单播传输问题。业已证明,网络编码(NC)可以比传统方法提供明显的优势。然而,由于缺乏对接收机无法解码的编码分组的使用的理解,现有的NC方案并不总是充分利用NC的潜力。为了克服此限制,我们提出了一种称为编码数据包辅助重传(EAR)的NC框架。 EAR开发了一种改进的机会监听机制,该机制使接收者可以存储所有听到的无法解码的NC数据包,并定期向发送者报告接收状态。因此,发送方可以直接将这些编码的数据包与其他数据包进行异或运算,以充分利用所有可用的编码机会。我们还制定了一个分组调度问题,旨在最大程度地利用网络中的编码机会。通过解决它,我们设计了一个简单而有效的调度程序,根据数据包对整体传输性能的贡献来对数据包进行优先级排序。然后,发送者确定应接着发送的分组,并基于优先级类别来选择要编码的分组。此外,我们从理论角度研究了我们方法的性能。从仿真结果可以看出,与现有方案相比,EAR可以显着减少重传总数并提供更有效的带宽利用率。

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