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Network Coding-Based Protection of Wireless Mesh Networks

机译:基于网络编码的无线网状网络保护

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Survivability of wireless mesh networks (WMNs) is a crucial issue that has not received enough attention in the literature. In this paper, we present a network coding-based protection scheme that overcomes the deficiencies in traditional proactive and reactive protection mechanisms. Proactive schemes ((1+1) protection) provide instantaneous recovery, but are resource-hungry. While reactive schemes ((1:N) protection) are efficient (in terms of used resources), but impose a delay and interrupt the network operation. Our approach provides protection to many-to-one flows at the speed of proactive protection, but at the cost of reactive protection. We derive the necessary and sufficient conditions for our solution on a restricted network topology, and then we adapt our solution to take into account general topologies. We also show how to perform deterministic network coding with {0,1} coefficients to achieve independence between linear combinations. Moreover, we discuss some practical considerations related to our approach, and we study the effect of our approach on the network performance. Finally, we consider the implementation of our approach when all network nodes have single transceivers, where we solve the problem through a greedy algorithm that constructs a sub-optimal feasible schedule for the sources transmissions.
机译:无线网状网络的生存能力(WMNS)是一个重要的问题,在文献中没有足够的重视。在本文中,我们提出了一种基于网络编码的保护方案,克服了传统主动和无功保护机制的缺陷。主动方案((1 + 1)保护)提供瞬时恢复,但是资源饥饿。虽然反应方案((1:n)保护)是有效的(在使用的资源方面),但施加延迟和中断网络操作。我们的方法以主动保护的速度为多对一流提供保护,但以反应性保护成本。我们在限制网络拓扑上获得了我们解决方案的必要和充分条件,然后我们调整我们的解决方案考虑到一般拓扑。我们还展示了如何执行与{0,1}系数的确定性网络编码,以实现线性组合之间的独立性。此外,我们讨论了与我们的方法相关的一些实际考虑因素,我们研究了我们对网络性能的方法的影响。最后,当所有网络节点都有单个收发器时,我们考虑实现我们的方法,在那里我们通过贪婪算法解决问题,该贪婪算法构造了源传输的子最优可行计划。

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