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A dynamic threshold-based probabilistic scheme for broadcasting in ad hoc networks

机译:在ad hoc网络中广播的基于动态阈值的概率方案

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Broadcasting is a fundamental operation in a mobile ad hoc network (MANETs) protocols. The flooding is the simplest mechanism used for message broadcasting in MANETs in which a message is rebroadcasted, by each node, exactly once. Despite its simplicity, it can cause high redundancy retransmission that could generate messages contention and collision. However, the issue is finding a way to minimize the number of redundantly received messages in order to save transmission energy while maintaining good latency and high reachability. Several enhanced versions of the flooding mechanism have been proposed to alleviate this issue by inhibiting some nodes from rebroadcasting. The selection of relay nodes is a major design consideration in all enhanced versions. In this paper, a dynamic threshold-based probabilistic scheme (DTP) is introduced. In DTP, the threshold value at the nodes is dynamically adjusted using only information from neighboring nodes. Results are presented and show the efficiency of DTP in terms of reachability, saved rebroadcast, and average latency.
机译:广播是移动自组织网络(MANET)协议中的一项基本操作。泛洪是用于MANET中消息广播的最简单的机制,在该机制中,每个节点仅将消息重新广播一次。尽管它很简单,但是它可能导致高冗余重传,从而可能导致消息争用和冲突。但是,问题是找到一种方法来最小化冗余接收的消息的数量,以节省传输能量,同时保持良好的等待时间和高可达性。已经提出了泛洪机制的几种增强版本,以通过禁止某些节点进行重新广播来缓解此问题。在所有增强版本中,中继节点的选择都是主要的设计考虑因素。本文介绍了一种基于动态阈值的概率方案(DTP)。在DTP中,仅使用来自相邻节点的信息来动态调整节点处的阈值。呈现了结果,并显示了DTP在可达性,节省的重播和平均延迟方面的效率。

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