An All-optical Ring Network With Past Tunable Sources

M. Marsan, A. Fumagalli, Emilio Leonardi, F. Neri
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引用次数: 1

Abstract

WDM technology and optical amplifiers have opened a new frontier for all-optical packet switched networks. However, several of the recently proposed WDM network architectures require as many wavelengths as the number of nodes attached to tlie network (see [a] for a survey). This resu1t.s in a dedicated wavelength channel for any node for either transmission or reception. These approaches might fall short when a relatively large number of nodes must be interconnected, due to c,urrently available optical technology, whic11 severely limits tlie maximum number of wavelengths in the system. We present a novel network architecture, named Daisy, that combines an N-frequency WDM approach with space diversity and time division access to interconnect up to N' nodes. 2 N fibers connect the nodes in a physical ring topology. Each node is assigned a dedicated logical cl~annel for reception operation. Daisy makes use of fast tunable transmitters and fixed receivers, and routes the light signals thoughout tlie network with passive optical components available today. Moreover, in Daisy routing is done so that a logical mesh configuration is realized over the ring physical topology. This configuration allows for a reduced maximum insertion loss encountered by packets, which in turns leads to a reduced amount of amplifier noise seen at the receiver.
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具有过去可调谐源的全光环形网络
WDM技术和光放大器为全光分组交换网络开辟了一个新的前沿。然而,最近提出的几种WDM网络架构需要的波长与连接到网络的节点数量一样多(参见[a]的调查)。这resu1t。S在任何节点的专用波长信道中用于发送或接收。由于当前可用的光学技术严重限制了系统中波长的最大数量,当必须连接相对大量的节点时,这些方法可能会失效。我们提出了一种新的网络架构,名为Daisy,它将N频WDM方法与空间分集和时分访问相结合,以互连多达N个节点。2n光纤以物理环型拓扑连接节点。每个节点被分配一个专用的逻辑通道用于接收操作。Daisy利用快速可调发射机和固定接收器,并通过目前可用的无源光学元件将光信号路由到整个无线网络。此外,在Daisy中进行路由是为了在环形物理拓扑上实现逻辑网格配置。这种配置允许减少数据包遇到的最大插入损耗,从而减少接收器上看到的放大器噪声量。
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