Performance analysis of cross layer AODV for heterogeneously powered ad-hoc networks

B. Ramachandran, S. Shanmugavel
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引用次数: 5

Abstract

Heterogeneously powered ad-hoc networks are characterized by asymmetry links. The low power nodes are able to receive from high power nodes but not vice versa. This poses challenges to routing discovery processes of routing protocols, those dependent on symmetry links. In this paper, we propose a cross layer design that effectively improves route discovery and hence the overall performance of heterogeneously powered ad-hoc networks. Our approach identifies and rejects the unidirectional links and seamlessly supports the usage of bi-directional links at the routing layer. This approach is based on calculating the path loss experienced by RREQ packet and judging the ability of the receiving node in delivering the RREP packet to the sending node of the link. That is, it integrates the routing decision of network layer, with signal strength of physical layer. Simulations are performed to study the performance of cross layer AODV (CLAODV) protocol using GloMoSim, the global mobile simulator. This cross layer protocol reduces delay in route discovery and improves packet delivery ratio around 25-35% in the heterogeneously powered ad-hoc network. It also reduces routing overhead around 75-85% and thereby reduces MAC collisions around 70-80%. In summary our design offers a simple, but efficient cross layer routing protocol to support routing in heterogeneously powered ad-hoc networks
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异构自组织网络跨层AODV性能分析
异构自组网的特点是链路不对称。低功率节点能够接收来自高功率节点的信号,反之则不行。这对依赖于对称链路的路由协议的路由发现过程提出了挑战。在本文中,我们提出了一种跨层设计,有效地改善了路由发现,从而提高了异构动力ad-hoc网络的整体性能。我们的方法识别和拒绝单向链路,并在路由层无缝地支持双向链路的使用。该方法基于计算RREQ报文经历的路径损耗,并判断接收节点向链路发送节点发送RREP报文的能力。即将网络层的路由决策与物理层的信号强度相结合。利用全球移动模拟器GloMoSim对跨层AODV (CLAODV)协议的性能进行了仿真研究。这种跨层协议减少了路由发现的延迟,并在异构供电的ad-hoc网络中提高了约25-35%的数据包传送率。它还减少了大约75-85%的路由开销,从而减少了大约70-80%的MAC冲突。总之,我们的设计提供了一个简单但有效的跨层路由协议,以支持异构驱动的ad-hoc网络中的路由
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