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Link-Stability and Energy Aware Routing Protocol in Distributed Wireless Networks

机译:分布式无线网络中的链路稳定性和能量感知路由协议

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Energy awareness for computation and protocol management is becoming a crucial factor in the design of protocols and algorithms. On the other hand, in order to support node mobility, scalable routing strategies have been designed and these protocols try to consider the path duration in order to respect some QoS constraints and to reduce the route discovery procedures. Often energy saving and path duration and stability can be two contrasting efforts and trying to satisfy both of them can be very difficult. In this paper, a novel routing strategy is proposed. This proposed approach tries to account for link stability and for minimum drain rate energy consumption. In order to verify the correctness of the proposed solution a biobjective optimization formulation has been designed and a novel routing protocol called Link-stAbility and Energy aware Routing protocols (LAER) is proposed. This novel routing scheme has been compared with other three protocols: PERRA, GPSR, and E-GPSR. The protocol performance has been evaluated in terms of Data Packet Delivery Ratio, Normalized Control Overhead, Link duration, Nodes lifetime, and Average energy consumption.
机译:用于计算和协议管理的能源意识已成为协议和算法设计中的关键因素。另一方面,为了支持节点移动性,已经设计了可伸缩的路由策略,并且这些协议尝试考虑路径持续时间,以便遵守某些QoS约束并减少路由发现过程。通常,节能,路径持续时间和稳定性可能是两个截然不同的工作,而要使两者都满足可能非常困难。本文提出了一种新颖的路由策略。该提出的方法试图考虑链路稳定性和最小消耗速率的能量消耗。为了验证所提出解决方案的正确性,设计了一种双目标优化公式,并提出了一种称为“链路稳定性和能量感知路由协议”(LAER)的新型路由协议。此新颖的路由方案已与其他三种协议进行了比较:PERRA,GPSR和E-GPSR。已根据数据包传输率,标准化控制开销,链路持续时间,节点寿命和平均能耗来评估协议性能。

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