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On designing MAC protocols for wireless networks using directional antennas

机译:在设计使用定向天线的无线网络的MAC协议时

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摘要

We investigate the possibility of using directional antennas for medium access control in wireless ad hoc networks. Previous research in ad hoc networks typically assumes the use of omnidirectional antennas at all nodes. With omnidirectional antennas, while two nodes are communicating using a given channel, MAC protocols such as IEEE 802.11 require all other nodes in the vicinity to remain silent. With directional antennas, two pairs of nodes located in each other's vicinity may potentially communicate simultaneously, increasing spatial reuse of the wireless channel. Range extension due to higher gain of directional antennas can also be useful in discovering fewer hop routes. However, new problems arise when using directional beams that simple modifications to 802.11 may not be able to mitigate. This paper identifies these problems and evaluates the tradeoffs associated with them. We also design a directional MAC protocol (MMAC) that uses multihop RTSs to establish links between distant nodes and then transmits CTS, DATA, and ACK over a single hop. While MMAC does not address all the problems identified with directional communication, it is an attempt to exploit the primary benefits of beamforming in the presence of some of these problems. Results show that MMAC can perform better than IEEE 802.11, although we find that the performance is dependent on the topology and flow patterns in the system.
机译:我们调查了在无线ad hoc网络中使用定向天线进行媒体访问控制的可能性。以前在ad hoc网络中进行的研究通常假定在所有节点上都使用全向天线。使用全向天线,当两个节点使用给定信道进行通信时,MAC协议(如IEEE 802.11)要求附近的所有其他节点保持静音。使用定向天线,位于彼此附近的两对节点可能潜在地同时通信,从而增加了无线信道的空间复用。由于定向天线增益更高而引起的范围扩展,在发现更少的跳频路径时也很有用。但是,当使用定向波束时,会出现新的问题,即对802.11的简单修改可能无法缓解。本文确定了这些问题并评估了与之相关的权衡。我们还设计了一种定向MAC协议(MMAC),该协议使用多跳RTS在远处的节点之间建立链接,然后通过单跳传输CTS,DATA和ACK。尽管MMAC不能解决定向通信中发现的所有问题,但它是在存在其中一些问题的情况下尝试利用波束成形的主要好处的尝试。结果表明,MMAC的性能优于IEEE 802.11,尽管我们发现性能取决于系统中的拓扑和流模式。

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