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An adaptive genetic fuzzy multi-path routing protocol for wireless ad-hoc networks

机译:无线自组网的自适应遗传模糊多径路由协议

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The inherent uncertainty in wireless mobile ad hoc networks (MANET), due to nodal mobility, unstable links, and limited resources, frequently renders routing paths unusable. Thus, recurrent route discoveries detrimentally affect network performance. The most promising solution is to use multiple redundant paths for routing. However, selecting an optimal path set is a NP hard problem. Most current multi-path routing protocols do not concentrate on the uncertainty in MANET. They choose an "optimal" multi-path set by considering only one single route selection parameter, such as the least number of intermediate hops or the maximal remaining battery power. As a result, they miss the correlations among the multiple route selection parameters. This paper proposes the genetic fuzzy multi-path routing protocol (GFMRP), which is a multi-path routing protocol based on fuzzy set theory and evolutionary computing. GFMRP naturally deals with the uncertainty in MANET and adaptively constructs a set of highly reliable paths by considering the interplays among multiple route selection parameters. GFMRP takes into account four important factors as the selection parameters; which are the energy consumption rate, queue occupancy rate, link stability, and the number of intermediate nodes. The performance of GFMRP is evaluated in terms of packet delivery ratio, average end-to-end delay, and the frequency of route rediscovery in ns2 context. Simulation results demonstrate that GFMRP is well suited to the ad hoc environment and outperforms DSR, SMR and SBMR.
机译:由于节点移动性,不稳定的链路和有限的资源,无线移动自组织网络(MANET)固有的不确定性经常使路由路径无法使用。因此,重复的路由发现会对网络性能产生不利影响。最有前途的解决方案是使用多个冗余路径进行路由。但是,选择最佳路径集是NP难题。当前大多数的多路径路由协议都不关注MANET中的不确定性。他们仅考虑一个单一的路由选择参数,例如最少的中间跳数或最大的剩余电池电量,来选择“最佳”多路径集。结果,它们错过了多个路由选择参数之间的相关性。提出了遗传模糊多路径路由协议(GFMRP),它是一种基于模糊集理论和进化计算的多路径路由协议。 GFMRP自然地解决了MANET中的不确定性,并通过考虑多个路由选择参数之间的相互影响,自适应地构建了一组高度可靠的路径。 GFMRP将四个重要因素作为选择参数。分别是能耗率,队列占用率,链路稳定性和中间节点数。根据ns2上下文中的数据包传递率,平均端到端延迟和路由重新发现的频率来评估GFMRP的性能。仿真结果表明,GFMRP非常适合临时环境,其性能优于DSR,SMR和SBMR。

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