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A Reed-Solomon Based Method to Improve Message Delivery in Delay Tolerant Networks

机译:基于Reed-Solomon的方法在容错网络中改善消息传递

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Delay and Disruption Tolerant Networks are made up of mobile wireless nodes which may experience major message delivery restrictions. Such restrictions are the result of intermittent connectivity and scattered topology. Within these networks, messages can be detained for long periods of time or never be delivered. Existing solutions that purport improved message delivery rates modify routing protocols to perform integrity verification with each hop, resulting in routing overhead and, very often, unnecessary processing costs. This article proposes a scheme, named EMCOD, which decreases message delivery delay, while minimally increasing the processing overheads. To achieve this, EMCOD uses data encoding and interleaving to create messages. The original data is reassembled from some of the messages received, without the need to wait for all messages to be received. In scenarios subject to long delays and/or significant packet loss rates, it is possible to reduce original data recovery times by more than 50%. The processing overhead resulting from the encoding procedures is offset by the data recovery capabilities, which effectively decreases network overheads by more than 60%, in the same scenarios. EMCOD modifies the Bundle Layer, without interfering with the remaining layers, making it possible to route the messages through nodes that do not implement the proposed scheme.
机译:延迟和中断容忍网络由移动无线节点组成,这些移动无线节点可能会遇到主要的邮件传递限制。这样的限制是间歇性连接和分散拓扑的结果。在这些网络中,邮件可能会被长时间保留或永远不会被传递。声称提高消息传递速率的现有解决方案修改了路由协议,以对每个跃点执行完整性验证,从而导致路由开销以及很多时候不必要的处理成本。本文提出了一种名为EMCOD的方案,该方案可减少消息传递延迟,同时最小化处理开销。为此,EMCOD使用数据编码和交织来创建消息。原始数据是从某些接收到的消息中重组而来的,无需等待所有消息被接收。在遭受长时间延迟和/或重大丢包率的情况下,可以将原始数据恢复时间减少50%以上。编码过程所产生的处理开销被数据恢复功能所抵消,在相同情况下,它可以有效地将网络开销减少60%以上。 EMCOD在不干扰其余层的情况下修改了捆绑层,从而可以将消息路由通过未实现建议方案的节点。

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