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Joint Transmission Rate Control and Opportunistic Network Coding Over Wireless Networks

机译:无线网络上的联合传输速率控制和机会网络编码

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摘要

Existing opportunistic network coding architectures (e.g., COPE) rely on pseudo-broadcast to deliver a coded packet to multiple receivers in a single transmission. Only the primary receiver acknowledges the reception by MAC-layer acknowledgements (synchronous ACKs) and the other receivers receive the coded packet by overhearing and acknowledge the reception by asynchronous ACKs, which are usually piggybacked in outgoing data packets. In realistic wireless networks, this mechanism may cause unnecessary retransmissions if asynchronous ACKs are dropped due to packet losses or arrive late and thus compromise the throughput gain brought by network coding. In this paper, we propose a framework of joint rate control and code selection (ORC) to address this issue, aiming at improving the performance gain of opportunistic network coding in wireless networks. The framework of ORC consists of two mechanisms: (1) Rate control: the optimal transmission rate for coded packets is selected by formulating the rate control process as a Finite Horizon Markov Decision Process. (2) Code selection: based on the results of rate selection, the packet combination for forming the coded packet is determined. Numerical results show that ORC can substantially improve the performance gain of opportunistic network coding compared with COPE.
机译:现有的机会网络编码架构(例如,COPE)依靠伪广播在单个传输中将编码的分组传送到多个接收器。只有主要接收者通过MAC层确认(同步ACK)确认接收,其他接收者通过偷听来接收编码的数据包,并通过异步ACK确认接收,异步ACK通常背在输出数据包中。在实际的无线网络中,如果异步ACK由于数据包丢失而丢失或延迟到达,则此机制可能导致不必要的重传,从而损害了网络编码带来的吞吐量增益。在本文中,我们提出了一个联合速率控制和代码选择(ORC)框架来解决这个问题,旨在提高无线网络中机会网络编码的性能。 ORC的框架由两种机制组成:(1)速率控制:通过将速率控制过程表述为有限水平马尔可夫决策过程来选择编码数据包的最佳传输速率。 (2)代码选择:基于速率选择的结果,确定用于形成编码分组的分组组合。数值结果表明,与COPE相比,ORC可以显着提高机会网络编码的性能。

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