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Threshold Based Best Custodian Routing Protocol for Delay Tolerant Network

机译:容错网络中基于阈值的最佳保管路由协议

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Delay Tolerant Network (DTN) is a kind of network in which the source may not be able to establish the stable and uninterrupted path to destination due to network partitioning, dynamic topology change and frequent disconnections. In order to dealt disruption and disconnections a store, carry and forward paradigm is used in which node stores the incoming messages in its buffer, carries it while moving and forward when comes within the transmission range of other nodes. Message forwarding contributes and important role in increasing its delivery. For instance, probabilistic routing protocol forwards message to a node having high probability value to meet message destination. These protocols cannot handle a situation in which the node continually transmits messages even the probability difference is very small. In this paper, we have proposed a routing protocol known as Threshold Based best custodian Routing Protocol (TBbcRP) for delay tolerant network. We have proposed a threshold-based method to compute the quality value which is the ability of node to carry message. A self-learning mechanism has been used to remove the delivered messages from the network. Moreover, a buffer aware mechanism has been used that make sure availability of buffer space at receiver before message transmission. We have compared the performance of TBbcRP with Epidemic, PRoPHET and Delegated Forwarding. The proposed TBbcRP outperforms in terms of maximizing the delivery probability, reducing number of transmissions and message drop.
机译:延迟容忍网络(DTN)是一种网络,其中源可能由于网络分区,动态拓扑更改和频繁断开而无法建立到目的地的稳定且不间断的路径。为了处理中断和断开连接,使用了携带和转发范例,其中节点将传入消息存储在其缓冲区中,并在其他节点的传输范围内时在前进和前进时携带它。邮件转发在增加其传递方面起着重要作用。例如,概率路由协议将消息转发到具有高概率值的节点以满足消息目的地。这些协议无法处理节点连续发送消息的情况,即使概率差异很小。在本文中,我们提出了一种用于基于延迟的网络的路由协议,称为基于阈值的最佳保管人路由协议(TBbcRP)。我们提出了一种基于阈值的方法来计算质量值,该质量值是节点承载消息的能力。自学习机制已用于从网络中删除传递的消息。此外,已经使用了一种缓冲区感知机制,该机制可确保在消息传输之前接收者处缓冲区空间的可用性。我们将TBbcRP与流行病,PRoPHET和委托转发的性能进行了比较。拟议的TBbcRP在最大程度地提高传递概率,减少传输次数和消息丢弃方面表现优于。

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