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Energy-Balanced Routing Algorithm Based on Ant Colony Optimization for Mobile Ad Hoc Networks

机译:Ad Hoc网络中基于蚁群优化的能量均衡路由算法

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摘要

The mobile ad hoc network (MANET) is a multi-hop, non-central network composed of mobile terminals with self-organizing features. Aiming at the problem of extra energy consumption caused by node motion in MANETs, this paper proposes an improved energy and mobility ant colony optimization (IEMACO) routing algorithm. Firstly, the algorithm accelerates the convergence speed of the routing algorithm and reduces the number of route discovery packets by introducing an offset coefficient of the transition probability. Then, based on the energy consumption rate, the remaining lifetime of nodes (RLTn) is considered. The position and velocity information predicts the remaining lifetime of the link (RLTl). The algorithm combines RLTn and RLTl to design the pheromone generation method, which selects the better quality path according to the transition probability to ensure continuous data transmission. As a result, the energy consumption in the network is balanced. The simulation results show that compared to the Ad Hoc on-demand multipath distance vector (AOMDV) algorithm with multipath routing and the Ant Hoc Max-Min-Path (AntHocMMP) algorithm in consideration of node energy consumption and mobility, the IEMACO algorithm can reduce the frequency of route discovery and has lower end-to-end delay as well as packet loss rate especially when nodes move, and can extend the network lifetime.
机译:移动自组织网络(MANET)是由具有自组织功能的移动终端组成的多跳非中心网络。针对移动自组网中节点运动引起的额外能耗问题,提出了一种改进的能量和移动性蚁群优化(IEMACO)路由算法。首先,该算法通过引入转移概率的偏移系数来加快路由算法的收敛速度,并减少路由发现包的数量。然后,基于能耗率,考虑节点的剩余寿命(RLTn)。位置和速度信息预测链接(RLT1)的剩余寿命。该算法结合RLTn和RLT1来设计信息素生成方法,该方法将根据过渡概率选择质量更好的路径,以确保连续的数据传输。结果,平衡了网络中的能量消耗。仿真结果表明,与节点能耗和移动性相比,与具有多路径路由的Ad Hoc按需多路径距离矢量(AOMDV)算法和Ant Hoc最大最小路径(AntHocMMP)算法相比,IEMACO算法可以减少路由发现的频率,较低的端到端延迟以及丢包率(尤其是在节点移动时),并且可以延长网络寿命。

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