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QoS-PAR: a routing protocol for wireless ad hoc networks using a cross-layer autonomic architecture

机译:QoS-PAR:使用跨层自主架构的无线自组织网络的路由协议

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There is a growing consensus in the research community that, combining cross-layering and autonomic paradigms are, until now, the best alternative for better QoS support in ad hoc networks. Most of the proposed cross-layer architectures are not autonomic. Further, most of them are localised i.e., nodes consider purely local information in their optimizations, which degenerates into selfish behaviour of individual wireless nodes. Unfortunately, this non-collaborative behaviour limits the overall system performance. In this paper, we present a QoS-Position Aided Routing protocol (QoS-PAR) to be deployed over a wireless ad hoc network whose nodes use XLEngine, the distributed cross-layer architecture introduced in [4]. XLEngine combines cross-layering and autonomic concepts where nodes exchange their local views to construct a global network-wide view that can be used to optimise the network operation such as routing. QoS-PAR integrates admission control as well as resource reservation mechanisms. Extensive simulations using the J-Sim simulator show that QoS-PAR over XLEngine significantly outperforms the AODV protocol over the classic layered architecture.
机译:在研究社区中,越来越多的共识是,迄今为止,结合跨层和自主范式是在ad hoc网络中更好地支持QoS的最佳选择。大多数提议的跨层体系结构都不是自主的。此外,它们中的大多数是本地化的,即,节点在其优化中仅考虑本地信息,从而退化为各个无线节点的自私行为。不幸的是,这种非协作行为限制了整个系统的性能。在本文中,我们提出了一种QoS-位置辅助路由协议(QoS-PAR),该协议将部署在无线自组网中,该节点的节点使用XLEngine,这是文献[4]中介绍的分布式跨层体系结构。 XLEngine结合了跨层和自治概念,其中节点交换本地视图以构造全局网络范围的视图,该视图可用于优化网络操作(例如路由)。 QoS-PAR集成了准入控制和资源保留机制。使用J-Sim仿真器进行的广泛仿真表明,在XLEngine上的QoS-PAR在传统的分层体系结构上明显优于AODV协议。

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