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Efficient broadcasting in ad hoc wireless networks using directional antennas

机译:使用定向天线的ad hoc无线网络中的高效广播

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Using directional antennas to conserve bandwidth and energy consumption in ad hoc wireless networks (or simply ad hoc networks) is becoming popular. However, applications of directional antennas for broadcasting have been limited. We propose a novel broadcast protocol called directional self-pruning (DSP) for ad hoc wireless networks using directional antennas. DSP is a nontrivial generalization of an existing localized deterministic broadcast protocol using omnidirectional antennas. Compared with its omnidirectional predecessor, DSP uses about the same number of forward nodes to relay the broadcast packet, while the number of forward directions that each forward node uses in transmission is significantly reduced. With the lower broadcast redundancy, DSP is more bandwidth and energy-efficient. DSP is based on 2-hop neighborhood information and does not rely on location or angle-of-arrival (AoA) information. Two special cases of DSP are discussed: the first one preserves shortest paths in reactive routing discoveries; the second one uses the directional reception mode to minimize broadcast redundancy. DSP is a localized protocol. Its expected number of forward nodes is O(1) times the optimal value. An extensive simulation study using both custom and ns2 simulators show that DSP significantly outperforms both omnidirectional broadcast protocols and existing directional broadcast protocols.
机译:在Ad hoc无线网络(或简单地说Ad hoc网络)中使用定向天线来节省带宽和能耗正变得越来越普遍。但是,定向天线在广播中的应用受到限制。我们提出了一种新的广播协议,称为定向自修剪(DSP),用于使用定向天线的ad hoc无线网络。 DSP是使用全向天线的现有本地化确定性广播协议的重要总结。与它的全向前辈相比,DSP使用大约相同数量的前向节点来中继广播数据包,而每个前向节点在传输中使用的前向方向的数量则大大减少。凭借较低的广播冗余,DSP具有更高的带宽和能源效率。 DSP基于2跳邻域信息,并且不依赖于位置或到达角度(AoA)信息。讨论了DSP的两种特殊情况:第一种在反应式路由发现中保留最短路径;第二种是在响应式路由发现中保留最短路径。第二种使用定向接收模式来最大程度地减少广播冗余。 DSP是本地协议。它的预期前向节点数是最佳值的O(1)倍。使用定制和ns2仿真器进行的广泛仿真研究表明,DSP的性能明显优于全向广播协议和现有的定向广播协议。

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