首页> 外文会议>European Performance Engineering Workshop(EPEW 2007); 20070927-28; Berlin(DE) >An Efficient Counter-Based Broadcast Scheme for Mobile Ad Hoc Networks
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An Efficient Counter-Based Broadcast Scheme for Mobile Ad Hoc Networks

机译:移动自组织网络的基于计数器的高效广播方案

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In mobile ad hoc networks (MANETs), broadcasting plays a fundamental role, diffusing a message from a given source node to all the other nodes in the network. Flooding is the simplest and commonly used mechanism for broadcasting in MANETs, where each node retransmits every uniquely received message exactly once. Despite its simplicity, it however generates redundant rebroadcast messages which results in high contention and collision in the network, a phenomenon referred to as broadcast storm problem. Pure probabilistic approaches have been proposed to mitigate this problem inherent with flooding, where mobile nodes rebroadcast a message with a probability p which can be fixed or computed based on the local density. However, these approaches reduce the number of rebroadcasts at the expense of reachability. On the other hand, counter-based approaches inhibit a node from broadcasting a packet based on the number of copies of the broadcast packet received by the node within a random access delay time. These schemes achieve better throughput and reachability, but suffer from relatively longer delay. In this paper, we propose an efficient broadcasting scheme that combines the advantages of pure probabilistic and counter-based schemes to yield a significant performance improvement. Simulation results reveal that the new scheme achieves superior performance in terms of saved-rebroadcast, reachability and latency.
机译:在移动自组织网络(MANET)中,广播起着基本作用,它将消息从给定的源节点传播到网络中的所有其他节点。泛洪是在MANET中广播的最简单且常用的机制,其中每个节点仅将一次唯一接收的消息重传一次。尽管它很简单,但是它会生成冗余的重播消息,从而导致网络中的高竞争和冲突,这种现象称为广播风暴问题。已经提出了纯概率方法来缓解泛洪所固有的问题,其中移动节点以概率p重新广播消息,该概率p可以是固定的,也可以基于局部密度来计算。但是,这些方法以可到达性为代价,减少了重播的次数。另一方面,基于计数器的方法基于节点在随机访问延迟时间内接收到的广播数据包的副本数来禁止节点广播数据包。这些方案可实现更好的吞吐量和可达性,但会出现相对较长的延迟。在本文中,我们提出了一种有效的广播方案,该方案结合了纯概率方案和基于计数器的方案的优点,可以显着提高性能。仿真结果表明,该新方案在保存转播,可达性和延迟方面均达到了卓越的性能。

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