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Hop Count Distance in Flooding-Based Mobile Ad Hoc Networks With High Node Density

机译:高洪流密度的基于洪泛的移动自组织网络中的跳数计数距离

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摘要

In this paper, we analyze the behavior of flooding-based packet forwarding in a densely populated mobile ad hoc network. Specifically, we develop the probability distribution of hop count distance for a source-destination pair in the network, given that all nodes are roaming. The behavior of packet forwarding in such an environment is analogous to the ripples radiating from the source when one drops a stone into a pond. Due to node mobility, the number of hops traversed by each packet is not simply equal to the number of ripples from source to destination. In this paper, node mobility is represented as a growing circle centered at the destination node. The moving behavior of intermediate nodes can be ignored in a flooding-based ad hoc network with high node density since there is always a node available in the transmission direction to forward packets. The analytical model is validated via simulations. We further demonstrate that based on the proposed analytical model, one can estimate the flooding cost and search latency of target location discovery commonly used in most existing on-demand ad hoc routing protocols, and learn the impact of different flooding schemes on target discovery
机译:在本文中,我们分析了人口密集的移动自组织网络中基于泛洪的数据包转发的行为。具体来说,假设所有节点都在漫游,我们针对网络中的源-目标对开发跳数计数距离的概率分布。在这种环境下,数据包转发的行为类似于当人们将石头扔进池塘时从源发出的涟漪。由于节点的移动性,每个数据包遍历的跃点数不仅仅等于从源到目的地的波纹数。在本文中,节点移动性表示为以目标节点为中心的增长圆。在具有高节点密度的基于洪泛的自组织网络中,可以忽略中间节点的移动行为,因为在传输方向上始终存在一个可用节点来转发数据包。分析模型通过仿真验证。我们进一步证明,基于提出的分析模型,可以估算大多数现有的按需自组织路由协议中常用的目标位置发现的泛洪成本和搜索等待时间,并了解不同泛洪方案对目标发现的影响

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