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Intergating Multiple Metrics to Improve the Performance of a Routing Protocol over Wireless Mesh Networks

机译:集成多种指标以改善无线网状网络上路由协议的性能

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Wireless Mesh Networks (WMNs) are dynamically self-organized and self-configured, with the nodes in the network automatically establishing an ad hoc network and preserving the mesh connectivity. There are several features which might help to design an efficient routing protocol suitable for wireless mesh networks such as improved performance metrics, link or path optimization, mobility management, scalability, cross-layer design etc. Since WMNs are permanent or semi-permanent network, an efficient and reliable path establishment is the core concern for such type of networks. By using the improved performance metrics, a reliable path can be established between source and destination. Minimum hop-count is the metric most commonly used by existing routing protocols. This approach implicitly assumes that links either work well or don't work at all. While often true in wired networks, this is not a reasonable approximation in the wireless case; since many wireless links have intermediate loss ratios, interference problem, low throughput etc. For this reason, several performance metrics are already designed for WMNs such as Expected Transmission Count (ETX), Expected Transmission Time (ETT), Interference Aware Routing Metric (iAWARE), Link Type Aware (LTA) Metric, Success Probability Product (SPP) and so on. However, each individual routing metric consider some features and it is difficult to satisfy all the requirements of WMNs by using a single metric. Consequently, it is necessary to integrate multiple performance metrics into a routing protocol to attain optimal performance. This paper proposes a technique of integrating multiple routing metrics to improve the performance of a routing protocol. This technique is implemented in Ad hoc On-Demand Distance Vector (AODV) routing protocol and corresponding performance has been investigated in wireless mesh environment. Simulation results demonstrate significant performance improvement over standard AODV in WMNs.
机译:无线网状网络(WMN)是动态自组织和自配置的,网络中的节点会自动建立自组织网络并保留网状连接。有多种功能可能有助于设计一种适用于无线网状网络的有效路由协议,例如改进的性能指标,链路或路径优化,移动性管理,可伸缩性,跨层设计等。由于WMN是永久性或半永久性网络,这种类型的网络的核心问题是有效和可靠的路径建立。通过使用改进的性能指标,可以在源和目标之间建立可靠的路径。最小跳数是现有路由协议最常用的度量。这种方法隐式地假设链接要么正常工作,要么根本不工作。尽管在有线网络中通常是这样,但这在无线情况下并不是一个合理的近似值。由于许多无线链路具有中等损耗比,干扰问题,低吞吐量等。因此,已经为WMN设计了一些性能指标,例如预期传输计数(ETX),预期传输时间(ETT),干扰感知路由指标(iAWARE) ),链接类型感知(LTA)度量标准,成功概率产品(SPP)等。但是,每个单独的路由度量都考虑了某些功能,并且使用单个度量很难满足WMN的所有要求。因此,有必要将多个性能指标集成到路由协议中以获得最佳性能。本文提出了一种集成多个路由指标以提高路由协议性能的技术。该技术在Ad hoc按需距离矢量(AODV)路由协议中实现,并且已经在无线网状环境中研究了相应的性能。仿真结果表明,与WMN中的标准AODV相比,性能有了显着提高。

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