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Performance evaluation of a cooperative reputation system for vehicular delay-tolerant networks

机译:车辆延迟容忍网络合作信誉系统的性能评估

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In the last decade, both scientific community and automotive industry enabled communications among vehicles in different kinds of scenarios proposing different vehicular architectures. Vehicular delay-tolerant networks (VDTNs) were proposed as a solution to overcome some of the issues found in other vehicular architectures, namely, in dispersed regions and emergency scenarios. Most of these issues arise from the unique characteristics of vehicular networks. Contrary to delay-tolerant networks (DTNs), VDTNs place the bundle layer under the network layer in order to simplify the layered architecture and enable communications in sparse regions characterized by long propagation delays, high error rates, and short contact durations. However, such characteristics turn contacts very important in order to exchange as much information as possible between nodes at every contact opportunity. One way to accomplish this goal is to enforce cooperation between network nodes. To promote cooperation among nodes, it is important that nodes share their own resources to deliver messages from others. This can be a very difficult task, if selfish nodes affect the performance of cooperative nodes. This paper studies the performance of a cooperative reputation system that detects, identify, and avoid communications with selfish nodes. Two scenarios were considered across all the experiments enforcing three different routing protocols (First Contact, Spray and Wait, and GeoSpray). For both scenarios, it was shown that reputation mechanisms that punish aggressively selfish nodes contribute to increase the overall network performance.
机译:在过去的十年中,科学界和汽车工业都在不同场景下提出了不同的车辆架构的车辆之间进行通信。提出了车辆延迟容忍网络(VDTN)作为解决其他车辆体系结构中发现的一些问题的解决方案,即在分散区域和紧急情况下。这些问题多数是由车辆网络的独特特性引起的。与延迟容忍网络(DTN)相反,VDTN将束层置于网络层下面,以简化分层体系结构并在稀疏区域中进行通信,这些区域的特点是传播延迟长,错误率高,接触持续时间短。但是,这样的特性使联系变得非常重要,以便在每个联系机会处在节点之间交换尽可能多的信息。一种实现此目标的方法是强制网络节点之间的合作。为了促进节点之间的合作,重要的是节点共享自己的资源以传递来自其他节点的消息。如果自私的节点影响协作节点的性能,这可能是一个非常困难的任务。本文研究了一种检测,识别和避免与自私节点通信的合作信誉系统的性能。在所有实验中都考虑了两种情况,这些情况实施了三种不同的路由协议(“初次接触”,“喷涂和等待”和“ GeoSpray”)。对于这两种情况,都表明,积极惩罚自私节点的信誉机制有助于提高整体网络性能。

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