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Development of onboard LPM-based header processing and reactive link selection for optical packet and circuit integrated networks

机译:用于光分组和电路集成网络的基于板载LPM的报头处理和无功链路选择开发

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An optical packet and circuit integrated network (OPCInet) will allow diverse services, enhanced functional flexibility, and efficient energy consumption, as optical packet switching (OPS) and optical circuit switching (OCS) links are provided on the same infrastructure. In this paper, we design and develop a control system consisting of header processing for optical packets, signaling and routing for optical path setup, and wavelength resource control and link switching between OPS and OCS for the efficient use of resources. Our onboard optical packet header processor is capable of 16-bit longest prefix matching by embedding a 0.6W (5% of TCAM technology on the same condition), 200 million search-per-second (equivalent to 100 Gbps) forwarding engine LSI, and a statistical memory LSI for retaining the statistical information of processed headers. Reactive control automatically selects a packet or circuit link according to the statistical traffic information from the header processor and works with signaling for optical paths. We present an experimental demonstration of a new control system using a previously developed OPCInet testbed.
机译:由于在同一基础结构上提供了光分组交换(OPS)和光电路交换(OCS)链路,因此光分组和电路集成网络(OPCInet)将允许各种服务,增强的功能灵活性和高效的能耗。在本文中,我们设计和开发了一种控制系统,该系统包括用于光分组的报头处理,用于光路建立的信令和路由,波长资源控制以及OPS和OCS之间的链路交换,以有效利用资源。我们的板载光学数据包头处理器通过嵌入0.6W(在相同条件下为TCAM技术的5%),每秒2亿次搜索(相当于100 Gbps)的转发引擎LSI,能够实现16位最长的前缀匹配。统计存储器LSI,用于保留处理后的报头的统计信息。响应式控制根据来自报头处理器的统计流量信息自动选择一个数据包或电路链路,并与光路信令一起工作。我们提供使用先前开发的OPCInet测试平台的新控制系统的实验演示。

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