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Prioritization of Traffic for Resource Constrained Delay Tolerant Networks

机译:资源受限的延迟容忍网络的流量优先级

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In networks with common shared wireless medium, the available bandwidth is always valuable and often scarce resource. In addition to it, memory available at nodes (eg., sensor nodes) might be limited relative to the amount of information that needs to be stored locally. As Delay Tolerant Networks (DTNs) rely on node mobility for data dissemination, the high node mobility limits the duration of contact. Besides the issue of contact opportunities between nodes, the bandwidth, available storage at peering nodes and contact duration also affect data forwarding. These factors also influence the mechanisms such as buffer replacement and scheduling policies. So there are secondary problems that routing strategies may need to take care of such as to deal with limited resources like buffer, bandwidth and power. Furthermore, despite inherent delay tolerance of most DTN driving applications, there can be situations where some messages may be more important than the others and expected to get delivered earlier. So considering the network limitations and application requirements, the problem of choosing the messages to be transmitted when a contact opportunity arises and the messages to be dropped when buffer full is formulated. A buffer management policy to address these issues is proposed and analysed in this paper. Additionally the buffer utilization of various DTN routing protocols and the impact of buffer size on the performance of DTN are studied.
机译:在具有公共共享无线介质的网络中,可用带宽始终是宝贵的,并且通常是稀缺的资源。除此之外,相对于需要本地存储的信息量,节点(例如,传感器节点)处的可用内存可能受到限制。由于时延容忍网络(DTN)依赖于节点移动性来进行数据分发,因此高节点移动性限制了联系的持续时间。除了节点之间的联系机会问题之外,带宽,对等节点上的可用存储空间和联系持续时间也会影响数据转发。这些因素也影响诸如缓冲区替换和调度策略之类的机制。因此,路由策略可能需要解决一些次要问题,例如处理有限的资源,例如缓冲区,带宽和功率。此外,尽管大多数DTN驱动应用程序都具有固有的延迟容忍性,但在某些情况下某些消息可能比其他消息更重要,并有望更早地传递。因此,考虑到网络的局限性和应用要求,出现了选择出现联系机会时要发送的消息以及制定了缓冲区已满时要丢弃的消息的问题。本文提出并分析了一种针对这些问题的缓冲区管理策略。此外,还研究了各种DTN路由协议的缓冲区利用率以及缓冲区大小对DTN性能的影响。

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