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Improvement of Messages Delivery Time on Vehicular Delay-Tolerant Networks

机译:车辆延迟容忍网络上消息传递时间的改进

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Vehicular Delay-Tolerant Networks (VDTNs) are an application of the Delay-Tolerant Network (DTN) concept, where the movement of vehicles and their message relaying service is used to enable network connectivity under unreliable conditions. To address the problem of intermittent connectivity, long-term message storage is combined with routing schemes that replicate messages at transfer opportunities. However, these strategies can be inefficient in terms of network resource usage. Therefore, efficient scheduling and dropping policies are necessary to improve the overall network performance. This work presents a performance analysis, based on simulation, of the impact of different scheduling and dropping policies enforced on Epidemic and Spray and Wait routing schemes. This paper evaluates these policies from the perspective of their efficiency in reducing the messageȁ9;s end-to-end delay. In our scenario, it is shown that when these policies are based on the messageȁ9;s lifetime criteria, the message average delay decreases significantly and the overall message delivery probability also increases for both routing protocols. Further simulations show that these results outperform the MaxProp and PRoPHET routing protocols that have their own scheduling and dropping mechanisms.
机译:车载延迟容忍网络(VDTN)是延迟容忍网络(DTN)概念的应用,其中车辆的移动及其消息中继服务用于在不可靠的条件下实现网络连接。为了解决间歇性连接的问题,将长期邮件存储与在传输机会复制邮件的路由方案结合使用。但是,这些策略在网络资源使用方面可能效率低下。因此,有效的调度和丢弃策略对于改善整体网络性能是必需的。这项工作基于仿真,对在流行病,喷雾和等待路由方案上实施的不同调度和丢弃策略的影响进行了性能分析。本文从降低消息9端到端延迟的效率的角度评估了这些策略。在我们的场景中,可以看出,当这些策略基于消息的生存期标准时,两种路由协议的消息平均延迟都将显着降低,并且总体消息传递概率也将增加。进一步的仿真表明,这些结果优于具有自己的调度和删除机制的MaxProp和PRoPHET路由协议。

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