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Photonics for switching and routing

机译:用于交换和路由的光子学

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摘要

The ongoing growth of data traffic from existing and new applications poses a challenge to the packet-switched network infrastructure. High-capacity transport can be achieved in such networks by using dense wavelength-division-multiplexed systems, and reconfigurable optical add-drop multiplexers allow the optical layer to provision wavelength-based circuits between routing nodes. However, construction of the high-capacity packet routers provides significant scaling issues due to complexity, interconnect, and thermal limits. In this paper we will not seek to cover all aspects of optical packet switching and routing but outline some of the challenges facing the construction of such future routers and describe the role photonics can have in overcoming some of these issues. We will discuss how photonics' primary role will be to provide interconnection between racks of electronic routing elements and describe how fast wavelength switching can provide a high-capacity distributed switch fabric that will allow these packet routers to scale to higher capacities. The fast wavelength switching can be seen as the packet analog of wavelength-based circuit switching of today's transparent optical networks.
机译:来自现有应用程序和新应用程序的数据流量的持续增长对分组交换网络基础结构提出了挑战。通过使用密集的波分复用系统,可以在此类网络中实现大容量传输,并且可重新配置的光分插复用器允许光层在路由节点之间提供基于波长的电路。但是,由于复杂性,互连性和热限制,大容量分组路由器的结构会带来严重的扩展问题。在本文中,我们将不试图涵盖光分组交换和路由的所有方面,而是概述了构建此类未来路由器所面临的一些挑战,并描述了光子学在克服这些问题中所扮演的角色。我们将讨论光子学的主要作用是如何在电子路由元件的机架之间提供互连,并描述快速的波长交换如何提供高容量的分布式交换结构,从而使这些分组路由器能够扩展到更高的容量。快速的波长交换可以看作是当今透明光网络中基于波长的电路交换的分组模拟。

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