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Exploiting Multi-Beam Antennas for End-to-End Delay Reduction in Ad Hoc Networks

机译:利用多波束天线减少Ad Hoc网络的端到端延迟

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摘要

A Multi-Beam Antenna (MBA) can be defined as a set of directional radio transceivers. These transceivers are facing different directions to prevent signal interference with each other. MBA nodes have two main characteristics: the Multi-Packet Transmission (MPT) capability and the Multi-Packet Reception (MPR) capability whereby a node can transmit/receive multiple packets at the same time. In this paper, we provide an analysis of how this MPT/MPR capability can be used to reduce the end-to-end delay for delivered packets in ad hoc networks. Taking beam considerations (determination of the beam in which neighbors are located) into account, we formulate the delay reduction issue as an optimization problem that we solve. Our results show that to maximally exploit the full potential of MBAs for delay reduction, the scheduling of links has to promote the formation of star nodes and keep the formation of bridges to a minimum; all of which leads to the selection of routes that very often are not the shortest. In fact, using only the shortest routes has a negative impact on the delay. However, the optimal link scheduling comes at the expense of a higher overhead in terms of the total number of packet transmissions. Furthermore, the beamwidth has a direct and significant impact on the end-to-end delay and the computation time.
机译:可以将多波束天线(MBA)定义为一组定向无线电收发器。这些收发器面向不同的方向,以防止信号相互干扰。 MBA节点具有两个主要特征:多数据包传输(MPT)功能和多数据包接收(MPR)功能,从而一个节点可以同时发送/接收多个数据包。在本文中,我们对如何使用MPT / MPR功能来减少ad hoc网络中传递的数据包的端到端延迟进行了分析。考虑到波束问题(确定相邻波束所在的波束),我们将延迟减少问题公式化为我们要解决的优化问题。我们的结果表明,要最大程度地利用MBA的全部潜力来减少延迟,链路的调度必须促进星形节点的形成并将桥的形成保持在最低限度。所有这些都会导致选择通常不是最短的路线。实际上,仅使用最短的路线会对延迟产生负面影响。然而,就分组传输的总数而言,最佳链路调度是以较高开销为代价的。此外,波束宽度对端到端延迟和计算时间有直接而显着的影响。

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