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首页> 外文期刊>IEICE Transactions on Communications >Location-Aware Power-Efficient Directional MAC Protocol in Ad Hoc Networks Using Directional Antenna
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Location-Aware Power-Efficient Directional MAC Protocol in Ad Hoc Networks Using Directional Antenna

机译:使用定向天线的Ad Hoc网络中具有位置感知功能的高效定向MAC协议

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Use of directional antenna in the context of ad hoc wireless networks can largely reduce radio interference, thereby improving the utilization of wireless medium. Our major contribution in this paper is to devise a MAC protocol that exploits the advantages of directional antenna in ad hoc networks for improved system performance. In this paper, we have illustrated a MAC protocol for ad hoc networks using directional antenna with the objective of effective utilization of the shared wireless medium. In order to implement effective MAC protocol in this context, a node should know how to set its transmission direction to transmit a packet to its neighbors and to avoid transmission in other directions where data communications are already in progress. In this paper, we are proposing a receiver-centric approach for location tracking and MAC protocol, so that, nodes become aware of its neighborhood and also the direction of the nodes for communicating directionally. A node develops its location-awareness from these neighborhood-awareness and direction-awareness. In this context, researchers usually assume that the gain of directional antennas is equal to the gain of corresponding omni-directional antenna. However, for a given amount of input power, the range R with directional antenna will be much larger than that using omni-directional antenna. In this paper, we also propose a two level transmit power control mechanism in order to approximately equalize the transmission range R of an antenna operating at omni-directional and directional mode. This will not only improve medium utilization but also help to conserve the power of the transmitting node during directional transmission. Our proposed directional MAC protocol can be effective in both ITS (Intelligent Transportation System), which we simulate in String and Parallel Topology, and in any community network, which we simulate in Random Topology. The performance evaluation on QualNet network simulator clearly indicates the efficiency of our protocol.
机译:在ad hoc无线网络中使用定向天线可以大大减少无线电干扰,从而提高无线介质的利用率。我们在本文中的主要贡献是设计了一种MAC协议,该协议利用了ad hoc网络中定向天线的优势来改善系统性能。在本文中,我们以有效利用共享无线介质为目标,说明了使用定向天线的ad hoc网络MAC协议。为了在这种情况下实现有效的MAC协议,节点应知道如何设置其传输方向以将数据包传输到其邻居,并避免在已经进行数据通信的其他方向传输。在本文中,我们提出了一种以接收器为中心的方法来进行位置跟踪和MAC协议,以使节点知道其邻域以及节点的方向以进行定向通信。节点从这些邻域感知和方向感知中发展其位置感知。在这种情况下,研究人员通常假设定向天线的增益等于相应的全向天线的增益。但是,对于给定的输入功率量,定向天线的范围R将比使用全向天线的范围大得多。在本文中,我们还提出了一种两级发射功率控制机制,以使在全向和定向模式下工作的天线的发射范围R大致相等。这不仅将提高介质利用率,而且还将有助于在定向传输期间节省传输节点的功率。我们提出的定向MAC协议在ITS(智能运输系统)(在字符串和并行拓扑中进行模拟)以及任何社区网络(在随机拓扑中进行模拟)中均有效。 QualNet网络模拟器上的性能评估清楚地表明了我们协议的效率。

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