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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >A layered broadband switching architecture with physical or virtual path configurations
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A layered broadband switching architecture with physical or virtual path configurations

机译:具有物理或虚拟路径配置的分层宽带交换体系结构

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摘要

The authors describe a multilayer connection control architecture for broadband communications. A graph framework is introduced to describe network layers of network design, path configurations, dynamic call routing, burst switching, and asynchronous transfer mode (ATM) cell switching. These hierarchical layers of switching are performed at decreasing time scales, respectively. Switching at the higher layer is performed to reduce blocking at the next smaller time scale. A layered notion of equivalent bandwidth for satisfying layered grade-of-service parameters is introduced for making connections at these time scales. The authors then focus on the path configuration layer. Two path setup methods, namely, physical and virtual path setup, are described. Mathematical programs minimizing path bandwidth usage subject to meeting grade-of-service requirements are formulated for both methods. The relative merits of these methods are compared. In one example, physical path setup is shown to require roughly 50% more bandwidth than virtual path setup.
机译:作者描述了用于宽带通信的多层连接控制体系结构。介绍了一种图框架来描述网络设计的网络层,路径配置,动态呼叫路由,突发交换和异步传输模式(ATM)信元交换。这些切换的分层层分别在减小的时间尺度上执行。执行较高层的切换可减少下一个较小时间范围的阻塞。引入了满足带宽的服务等级参数的等效带宽的分层概念,以在这些时间尺度上建立连接。然后,作者专注于路径配置层。描述了两种路径设置方法,即物理和虚拟路径设置。为这两种方法制定了数学程序,以最小化路径带宽的使用,以满足服务等级的要求。比较了这些方法的相对优点。在一示例中,物理路径设置显示比虚拟路径设置需要大约50%的带宽。

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