可扩展无线网状网络的多通道忙音多址

Hairong Zhou, C. Yeh, Hussein T. Mouftah
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引用次数: 4

摘要

本文提出了一种多通道无线网状网络介质访问控制(MAC)协议,该协议利用忙音来防止数据通道上的数据包冲突。在多跳无线网络中,多通道MAC方案可以实现比单通道MAC方案更高的网络吞吐量。在对容量要求较高的WMNs中,利用多信道来支持骨干多媒体应用尤其具有吸引力。以前提出的MAC协议大多利用RTS/CTS机制来处理多跳环境下暴露/隐藏终端问题导致的数据包冲突。然而,当多个通道用于数据传输时,RTS/CTS机制不能再成功地处理暴露/隐藏终端。通过研究WMN体系结构的特点,我们将忙音方案应用于网格节点不受功耗限制的WMN介质访问控制机制中。在本文中,我们清楚地提出了我们所提出的WMNs多通道MAC协议的思想和操作。正在进行全面的仿真,以比较我们提出的机制与其他基于RTS/ cts的多通道MAC协议的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-channel Busy-tone Multiple Access for Scalable Wireless Mesh Network
This paper proposes a multi-channel medium access control (MAC) protocol for wireless mesh networks (WMNs) by using busy tones to prevent data packet collisions at data channels. Multi-channel MAC schemes can achieve higher network throughput than single channel MAC schemes in multihop wireless networks. It is especially appealing to exploit multiple channels in WMNs which has high capacity requirement to support backbone multimedia applications. Most previously proposed MAC protocols make use of the RTS/CTS mechanism to deal with data packet collisions caused by exposed/hidden terminal problems in multihop environment. However, when multiple channels are used for data transmissions, the RTS/CTS mechanism can no longer handle the exposed/hidden terminal successfully. By investigating the special features of WMN architecture, we apply the busy tone solution into the medium access control mechanism for WMNs, in which mesh nodes have no limit on power consumption. In this paper, we clearly presented the idea and operation of our proposed multichannel MAC protocol for WMNs. Comprehensive simulation is underway to compare the performance of our proposed mechanism with that of other RTS/CTS-based multi-channel MAC protocols.
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