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Impact of Dynamic Path Loss Models in an Urban Obstacle Aware Ad Hoc Network Environment

机译:动态路径损耗模型在城市障碍意识的临时网络环境中的影响

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摘要

This study highlights the importance of the physical layer and its impact on network performance in Mobile Ad Hoc Networks (MANETs). This was demonstrated by simulating various MANET scenarios using Network Simulator-2 (NS-2) with enhanced capability by adding propagation loss models (e.g., modified Two-Ray Ground model, ITU Line of Sight and Nonline of Sight (ITU-LoS and NLoS) model into street canyons and combined path loss and shadowing model (C-Shadowing)). The simulation results were then compared with the original Two-Ray Ground (TRG) model already available into NS-2. The scenario primarily simulated was that of a mobile environment using Random Way Point (RWP) mobility model with a variable number of obstacles in the simulation field (such as buildings, etc., causing variable attenuation) in order to analyze the extent of communication losses in various propagation loss models. Performance of the Ad Hoc On-demand Distance Vector (AODV) routing protocol was also analyzed in an ad hoc environment with 20 nodes.
机译:本研究突出了物理层的重要性及其对移动临时网络中网络性能的影响(舰队)。通过使用网络模拟器-2(ns-2)模拟各种MANET场景来证明通过添加传播损耗模型(例如,修改的双射线地面模型,ITU视线和非线性线条(ITU-LOS和NLO),通过增强的能力来证明)模型进入街道峡谷和组合路径损耗和遮蔽模型(C-Shadows))。然后将模拟结果与已经可用的原始双射线地(TRG)模型进行比较。主要模拟的场景是使用随机方式(RWP)移动模型的移动环境,模拟字段中的变量障碍物(如建筑物等,导致变量衰减)以分析通信损耗的程度在各种传播损耗模型中。在具有20个节点的特设环境中还分析了Ad Hoc按需距离矢量(AODV)路由协议的性能。

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