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Provisioning multicast QoS for WDM-based optical wireless networks

机译:为基于WDM的光无线网络配置多播QoS

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摘要

Wavelength division multiplexing (WDM)-based optical technique is becoming the right choice for the next-generation Internet infrastructure to transport high-speed Internet Protocol traffic. Today, wireless asynchronous transfer mode (WATM) network plays the leading role; undoubtedly it will be replaced with wireless WDM (WWDM) network to provide higher quality of service for mobile users. In addition many conventional and emerging applications, such as teleconferencing and distributed games, require multicasting increasingly. Many efforts to support multicasting for WATM networks have been offered, yet there are rarely addressed on WWDM networks. Moreover, conventional operations to set up and tear down optical connections in WDM networks are unable to apply directly to WWDM networks. User's mobility may make the operating optical-multicast-tree to change into very inefficient. The tree may expand and consume excessive resources, and even lost connection due to violating the associated QoS constraints. In this paper, a Constrained Optical Tree Migration Scheme (COTMS) is proposed to support real-time multicast services for WWDM networks. COTMS efficiently deals with the constrained tree migration problem and adapts easily to the operations of WDM. Simulation results reveal that COTMS can markedly reduce the resources used by per optical tree, thus achieving both low handoff-dropping/join-blocking rate and high-resource utilization. Moreover, COTMS is also suitable for ad-hoc networks with multiple different frequencies for multicast routing.
机译:基于波分复用(WDM)的光学技术正成为下一代Internet基础结构传输高速Internet协议流量的正确选择。如今,无线异步传输模式(WATM)网络起着主导作用。毫无疑问,它将被无线WDM(WWDM)网络取代,从而为移动用户提供更高的服务质量。另外,许多传统的和新兴的应用程序,例如电话会议和分布式游戏,越来越需要多播。已经提供了许多支持WATM网络多播的努力,但是在WWDM网络上很少解决。此外,在WDM网络中建立和拆除光连接的常规操作无法直接应用于WWDM网络。用户的移动性可能会使运行的光多播树变为非常低效的。由于违反相关的QoS约束,树可能会扩展并消耗过多的资源,甚至会丢失连接。本文提出了一种约束光树迁移方案(COTMS),以支持WWDM网络的实时多播服务。 COTMS有效地解决了受约束的树迁移问题,并轻松适应WDM的操作。仿真结果表明,COTMS可以显着减少每棵光学树所使用的资源,从而实现较低的切换丢弃/连接阻塞率和高资源利用率。而且,COTMS还适用于具有多个不同频率的多播路由的自组织网络。

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