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Delay-Constrained Routing Based on Stochastic Model for Flying Ad Hoc Networks

机译:基于飞行临时网络随机模型的延时约束路由

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摘要

This paper aims at solving the end-to-end delay-constrained routing problem in a local way for flying ad hoc networks (FANETs). Due to the high mobility, it is difficult for each node in FANETs to obtain the global information. To solve this issue, we propose an adaptive delay-constrained routing with the aid of a stochastic model, which allows the senders to deliver the packets with only local information. We represent the problem in a mathematical form, where the effective transmission rate is viewed as the optimization objective and the link quality and end-to-end delay as the constraints. And, some mathematical tools are used to obtain the approximate solutions for the optimization problem. Before designing the routing scheme, the senders calculate the transition probability for its relay node by jointly considering local delay estimation and expected one-hop delay. Then, the sender transmits the packets to their relay node with transition probability. Finally, we prove the convergence of the proposed routing algorithm and analyse its performances. The simulation results show that the proposed routing policy can improve the network performance effectively in terms of throughput, loss rate, and end-to-end delay.
机译:本文旨在以当地的方式解决端到端的延迟约束路由问题,用于飞行临时网络(FANET)。由于移动性高,扇形中的每个节点难以获得全局信息。为了解决这个问题,我们提出了一种借助随机模型的自适应延迟约束路由,这允许发件人仅具有本地信息的数据包。我们以数学形式代表问题,其中有效传输速率被视为优化目标,以及作为约束的链路质量和端到端延迟。并且,一些数学工具用于获得优化问题的近似解。在设计路由方案之前,发件人通过联合考虑局部延迟估计和预期的单跳延迟来计算其继电器节点的转换概率。然后,发件人通过转换概率将分组发送到其继电器节点。最后,我们证明了所提出的路由算法的融合并分析其性能。仿真结果表明,在吞吐量,损耗率和端到端延迟方面,所提出的路由策略可以有效地提高网络性能。

著录项

  • 作者

    Shaojie Wen; Chuanhe Huang;

  • 作者单位
  • 年度 2018
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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