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Adaptive Routing Strategies in IEEE 802.16 Multi-Hop Wireless Backhaul Networks Based On Evolutionary Game Theory

机译:基于进化博弈论的IEEE 802.16多跳无线回程网络的自适应路由策略

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摘要

The high frequency segment (10-66GHz) of the IEEE 802.16 standard seems promising for the implementation of wireless backhaul networks carrying large volumes of Internet traffic. In contrast to wireline backbone networks, where channel errors seldom occur, routing decisions in IEEE 802.16 networks are conditioned by wireless channel impairments rather than by congestion, exclusively. This renders a cross-layer routing approach between the routing and the physical layers more appropriate during fading periods. In this paper, an adaptive cross-layer routing scheme is presented based on the selection of the most reliable path in terms of packet error ratio (unipath routing). The paper argues that routing Internet traffic through wireless backhaul networks is modeled more realistically employing evolutionary rather than conventional game theory. The stability of the proposed routing algorithm is proven and the dependence of the speed of convergence on various physical layer parameters is investigated. Is is also shown that convergence may be further accelerated by increasing the amount of information from the physical layer, specifically the physical separation between the alternative paths provided to the routing layer.
机译:IEEE 802.16标准的高频段(10-66GHz)似乎希望实现携带大量互联网流量的无线回程网络。与有线骨干网相比,在发生频道错误很少发生的情况下,IEEE 802.16网络中的路由决策由无线频道损伤而不是通过拥塞。这使得路由和物理层之间的跨层路由方法更合适地呈现在衰落期间。在本文中,基于在分组错误比(unipath路由)方面的选择基于选择最可靠的路径的自适应跨层路由方案。本文认为,通过无线回程网络路由互联网流量更现实地采用的进化而不是传统的博弈论。已经证明了所提出的路由算法的稳定性,并研究了对各种物理层参数的收敛速度的依赖性。还可以示出通过增加来自物理层的信息量,特别是提供给路由层的替代路径之间的物理分离,可以进一步加速收敛。

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