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Polylogarithmic Store-Carry-Forward Routing using Mobile Nodes

机译:使用移动节点的PolyGarithmic商店 - 前进路由

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It is well known that mobility increases the capacity of mobile ad hoc networks (MANETs) by reducing the number of relays for routing, prolonging the lifespan of wireless sensor networks (WSNs) by using mobile nodes in place of bottleneck static sensors, and ensuring network connectivity in delay-tolerant networks (DTNs) using mobile nodes to connect different parts of a disconnected network. Trajectory planning and the coordination of mobile nodes are two important design issues aiming to optimize or balance several measures, including delay, average number of relays, and moving distance. In this paper, we propose a new controlled mobility model with an expected polylogarithmic number of relays to achieve a good balance among several contradictory goals, including delay, the number of relays, and moving distance. The model is based on the small-world model where each static node has "short" link connections to its nearest neighbors and "long" link connections to other nodes following a certain probability distribution. Short links are regular wireless connections whereas long links are implemented using mobile nodes. Various issues are considered, including trade-offs between delay and average number of relays, selection of the number of mobile nodes, and selection of the number of long links. The effectiveness of the proposed model is evaluated analytically as well as through simulation.
机译:众所周知,移动性通过减少用于路由的继电器的数量,通过使用移动节点代替瓶颈静态传感器来延长无线传感器网络(WSNS)的寿命,并确保网络来增加移动临时网络(MANET)的容量。延迟容忍网络(DTN)的连接使用移动​​节点连接断开网络的不同部分。轨迹规划和移动节点的协调是两个重要的设计问题,旨在优化或平衡几种措施,包括延迟,平均继电器数量和移动距离。在本文中,我们提出了一种新的受控移动模型,具有预期的积极转移数量的继电器,在几种矛盾的目标中实现了良好的平衡,包括延迟,继电器的数量和移动距离。该模型基于小世界模型,其中每个静态节点与其最近邻居的“短”链接连接和与某个概率分布相比的其他节点的链接连接。短链路是常规无线连接,而使用移动节点实现长链接。考虑各种问题,包括延迟和平均继电器数之间的权衡,移动节点的数量以及选择长链路数量。建议模型的有效性在分析和通过模拟中评估。

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