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Energy and Spatial Reuse Efficient Network-Wide Real-Time Data Broadcasting in Mobile Ad Hoc Networks

机译:移动自组织网络中能源和空间复用高效的全网络实时数据广播

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In this paper, we present NB-TRACE, which is an energy-efficient network-wide voice broadcasting architecture for mobile ad hoc networks. In the NB-TRACE architecture, the network is organized into overlapping clusters through a distributed algorithm, where the clusterheads create a nonconnected dominating set. Channel access is regulated through a distributed TDMA scheme maintained by the clusterheads. The first group of packets of a broadcast session is broadcast through flooding, where each data rebroadcast is preceded by an acknowledgment to the upstream node. Nodes that do not get an acknowledgment for a predetermined time, except the clusterheads, cease to rebroadcast, which prunes the redundant retransmissions. The connected dominating set formed through this basic algorithm is broken in time due to node mobility. The network responds to the broken links through multiple mechanisms to ensure the maintenance of the connected dominating set. We compare NB-TRACE with four network layer broadcast routing algorithms (Flooding, Gossiping, Counter-based broadcasting, and Distance-based broadcasting) and three medium access control protocols (IEEE 802.11, SMAC, and MH-TRACE) through extensive ns-2 simulations. Our results show that NB-TRACE outperforms other network/MAC layer combinations in minimizing energy dissipation and optimizing spatial reuse, while producing competitive QoS performance.
机译:在本文中,我们介绍了NB-TRACE,它是一种用于移动自组织网络的节能型全网语音广播架构。在NB-TRACE体系结构中,网络通过分布式算法被组织为重叠的群集,其中群集头创建了一个非连接的主导集。信道访问是通过由簇头维护的分布式TDMA方案来调节的。广播会话的第一组数据包是通过泛洪广播的,其中每个数据重播之前都带有对上游节点的确认。在预定时间内未收到确认的节点(除了簇头之外)停止重新广播,这会删除冗余重传。通过该基本算法形成的连通支配集由于节点移动性而在时间上被破坏。网络通过多种机制对断开的链接做出响应,以确保所连接的主导集得以维护。通过广泛的ns-2,我们将NB-TRACE与四种网络层广播路由算法(洪水,八卦,基于计数器的广播和基于距离的广播)和三种媒体访问控制协议(IEEE 802.11,SMAC和MH-TRACE)进行了比较模拟。我们的研究结果表明,NB-TRACE在使能耗最小化和优化空间重用方面优于其他网络/ MAC层组合,同时可提供具有竞争力的QoS性能。

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