Directional antenna based time division scheduling in wireless ad hoc networks

Shaohua Li, D. Cho
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引用次数: 2

Abstract

Conventional omni-antenna ad hoc MAC protocols, such as the IEEE 802.11, use RTS/CTS mechanism to avoid collision but waste much space by reserving the wireless media over a large area. Using directional antenna is a good solution to increase spatial reuse, however, packet collision caused by hidden nodes and deafness problem are serious. Recently, many schemes based on directional antenna in ad hoc networks have been proposed, however, most of the schemes have not solved the hidden node and deafness problem completely. In our paper, in order to solve these problem, a node self scheduling based MAC protocol is proposed. For guaranteeing the transmission of data, we let all the nodes overhear control messages at a fixed period periodically. Through utilizing these overhear periods, our proposed scheme can efficiently reduce hidden node problem and the deafness problems, which is a specific problem in directional antenna based network. Through simulation result, we have found that our scheme performs better than conventional protocol in the static Ad hoc network with respect to throughput and end to end delay. That is, our proposed scheme provides a good method to solve the hidden nodes, deafness problem and also reduce much interferences to guarantee the data transmission in wireless Ad hoc networks.
无线自组网中基于定向天线的时分调度
传统的全天线自组织MAC协议,如IEEE 802.11,使用RTS/CTS机制来避免碰撞,但由于在大面积上保留无线媒体而浪费了大量空间。使用定向天线是增加空间复用的好方法,但由于隐藏节点导致的分组碰撞和失聪问题严重。近年来,在自组织网络中提出了许多基于定向天线的方案,但大多数方案都没有完全解决节点隐藏和失聪问题。为了解决这些问题,本文提出了一种基于节点自调度的MAC协议。为了保证数据的传输,我们让所有节点定时监听控制消息。通过利用这些偷听周期,我们提出的方案可以有效地减少隐藏节点问题和失聪问题,这是定向天线网络中所特有的问题。通过仿真结果,我们发现该方案在吞吐量和端到端延迟方面优于静态Ad hoc网络中的传统协议。该方案解决了无线自组织网络中存在的节点隐藏、失聪等问题,减少了大量干扰,保证了数据的传输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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