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A new cross layer based routing technique for mobile ad hoc networks using forwarding node selection

机译:使用转发节点选择的移动自组织网络基于交叉层的新路由技术

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It has become known that the traditional layered approach that separates routing, flow control, scheduling, and power control is suboptimal in wireless ad hoc networks. Nodes in an ad hoc environment face two major challenges: the mobility and the resource constraints. In a cross-layer design, the control over two or more layers can yield significantly performance improvement. Cross-layer based routing using forwarding node selection (CRNS) is proposed to adapt to the state of the network. In CRNS, each node maintains a table for its neighbors and selects its own route request forwarding nodes based on the state of the portion of the network surrounding it. The forwarding nodes have been selected according to the number of neighbors and their power of received hello message broadcasted by the neighboring nodes. The CRNS protocol has been implemented and evaluated and compared with well known protocol AODV using Glo-MoSim simulator. Extensive performance analyses including study of impacts of node density and node mobility have been performed. Results have revealed that the performance behavior of the CRNS routing protocols has significantly been improved.
机译:众所周知,在无线自组织网络中,将路由,流控制,调度和功率控制分开的传统分层方法是次优的。临时环境中的节点面临两个主要挑战:移动性和资源限制。在跨层设计中,对两层或更多层的控制可以显着提高性能。提出了使用转发节点选择(CRNS)的基于跨层路由的方法,以适应网络状态。在CRNS中,每个节点都为其邻居维护一个表,并根据其周围网络部分的状态选择自己的路由请求转发节点。已经根据邻居的数目及其邻居节点广播的接收到的问候消息的功率来选择转发节点。已使用Glo-MoSim模拟器对CRNS协议进行了实施和评估,并将其与众所周知的协议AODV进行了比较。已经进行了广泛的性能分析,包括研究节点密度和节点移动性。结果表明,CRNS路由协议的性能行为已得到显着改善。

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