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A distributed throughput-maximal scheduling MAC protocol for Wi-Fi mesh networks

机译:Wi-Fi网状网络的分布式吞吐量最大调度MAC协议

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With a proliferation of IEEE 802.11 WLAN technology, Wi-Fi mesh networks (WMNs) have received a considerable attention as a promising solution to provide a cost-efficient high-bandwidth Internet access to nomadic stations, such as lap-top computers and smartphones. However, the capacity of a WMN is still limited due to the frame collisions in its contention-based MAC protocols. In this paper, we present a distributed throughput-maximal scheduling (D-TMS) MAC protocol which overlays the distributed link-activation (DLA) algorithm over the IEEE 802.11 MAC protocol. The DLA algorithm activates a set of collision-free links by exchanging the control frames between neighbor mesh routers only. With an adaptive data-transmission period, the D-TMS MAC protocol attains a better throughput-delay performance for a wide range of traffic condition. The simulation results show that the D-TMS MAC protocol achieves much higher throughput than the IEEE 802.11 MAC protocols.
机译:随着IEEE 802.11 WLAN技术的发展,Wi-Fi网状网络(WMN)作为一种有前途的解决方案受到了广泛的关注,该解决方案旨在为便携式计算机和智能手机等移动站提供经济高效的高带宽Internet访问。然而,由于其基于竞争的MAC协议中的帧冲突,WMN的容量仍然受到限制。在本文中,我们提出了一种分布式吞吐量最大调度(D-TMS)MAC协议,该协议在IEEE 802.11 MAC协议上覆盖了分布式链路激活(DLA)算法。 DLA算法通过仅在相邻网状路由器之间交换控制帧来激活一组无冲突的链路。通过自适应数据传输周期,D-TMS MAC协议可在各种流量条件下获得更好的吞吐量延迟性能。仿真结果表明,D-TMS MAC协议比IEEE 802.11 MAC协议具有更高的吞吐量。

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