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Fast multichannel switching for IEEE 802.11s multiradio wireless mesh networks

机译:IEEE 802.11s多无线电无线网状网络的快速多通道交换

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摘要

Wireless mesh networks (WMN) are efficient and low cost solutions for the deployment of broadband access in various environments. To support real-time applications such as multimedia and emergency services, WMNs must provide quality of service (QoS) guarantees and QoS continuity protection. While the capacity of single radio WMNs may severely limit the QoS for such traffic, multiradio WMNs can overcome this restriction and provide additional links to support better QoS mechanisms. This paper describes the design and implementation of a mechanism to switch channel in IEEE 802.11s multiradio WMNs. This semi-centralized mechanism decreases the delays required to switch channels and ensures a continuous connectivity between mesh points and mesh portal points. Intended for self-configuration and self-healing mechanisms, the performance of our new channel switch mechanism is evaluated in a simulated environment. We show that time performance results obtained to optimize topologies or to recover from failures are well below the time constraints of real-time applications.
机译:无线网状网络(WMN)是用于在各种环境中部署宽带访问的高效且低成本的解决方案。为了支持诸如多媒体和紧急服务之类的实时应用,WMN必须提供服务质量(QoS)保证和QoS连续性保护。尽管单个无线电WMN的容量可能会严重限制此类业务的QoS,但是多无线电WMN可以克服此限制,并提供其他链接以支持更好的QoS机制。本文介绍了IEEE 802.11s多无线电WMN中切换信道的机制的设计和实现。这种半集中式机制减少了切换通道所需的延迟,并确保了网格点和网格入口点之间的连续连接。为了实现自我配置和自我修复机制,我们的新通道切换机制的性能在模拟环境中进行了评估。我们显示,优化拓扑或从故障中恢复所获得的时间性能结果远低于实时应用程序的时间限制。

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