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On the Information Propagation in Mobile Ad-Hoc Networks Using Epidemic Routing

机译:基于流行病路由的移动自组网中的信息传播

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In this paper, we study information propagation in a 2D mobile ad-hoc network, where mobile nodes are randomly and independently distributed on a torus following a homogeneous Poisson process with a given density. Nodes in the network move following a random direction mobility model. A piece of information is broadcast from a source node to all other nodes in the network, using a Susceptible-Infectious-Recovered (SIR) epidemic routing protocol. A distinguishing feature of the SIR algorithm, which leverages the mobility of mobile users, is that a relay node carries and forwards a piece of information for a specified amount of time. We first propose a metric fundamentally characterizing the information propagation in mobile ad-hoc networks. Then analytical results are derived for the probability that a non-zero fraction of nodes receive the information in the limit of large network size and for the expected fraction of nodes that receive the information. The analytical results are verified using simulations. The research provides useful insights on the design of mobile ad-hoc networks.
机译:在本文中,我们研究了二维移动自组织网络中的信息传播,该网络中的移动节点按照给定密度的均匀Poisson过程随机且独立地分布在圆环上。网络中的节点遵循随机方向移动性模型移动。使用易感性感染恢复(SIR)流行病路由协议,一条信息从源节点广播到网络中的所有其他节点。利用移动用户的移动性的SIR算法的一个显着特征是,中继节点在指定的时间内携带并转发一条信息。我们首先提出一种度量,该度量从根本上描述了移动自组织网络中信息的传播。然后,得出分析结果的原因是:在大型网络规模的限制内,非零比例的节点接收信息的概率以及接收信息的节点的预期比例。分析结果通过模拟验证。该研究为移动自组织网络的设计提供了有用的见解。

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