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Signal Transmission and Coding Architecture for Next-Generation Ethernet

机译:下一代以太网的信号传输和编码架构

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摘要

The first practical approach to 100-Gigabit Ethernet, i.e., Ethernet with a throughput of 100-Gb/s, is proposed for use in the next generation of LANs for GRID computing and large-capacity data centers. New structures, including a coding architecture, de-skewing method and high-speed packaging techniques, are introduced to the PHY layer to obtain the required data rate. Our form of 100-Gigabit Ethernet uses 10-Gb/s x 10-channel CWDM or parallel-optical links. The coding architecture is formed of 64B/66B codes, modified for the CWDM and parallel links. In the de-skewing of the parallel signals, specially designed IDLE characters are used to compensate for skewing of data in the respective signal lanes. Advanced packaging techniques, which suppress the propagation loss and reflection of the 10-Gb/s lanes to obtain high-speed, good integrity and low-noise signaling, are proposed and evaluated. The proposed architectural features make this 100-Gigabit Ethernet concept practical for next-generation LANs.
机译:提出了用于100 Gb以太网的第一种实用方法,即吞吐量为100 Gb / s的以太网,用于GRID计算和大容量数据中心的下一代LAN。 PHY层引入了包括编码体系结构,去歪斜方法和高速封装技术在内的新结构,以获得所需的数据速率。我们的100 Gb以太网形式使用10 Gb / s x 10通道CWDM或并行光纤链路。编码体系结构由针对CWDM和并行链路修改的64B / 66B代码组成。在并行信号的去歪斜中,特殊设计的IDLE字符用于补偿各个信号通道中数据的歪斜。提出并评估了先进的封装技术,该技术可抑制10 Gb / s通道的传播损耗和反射,从而获得高速,良好的完整性和低噪声的信号。所建议的体系结构功能使这种100 Gb以太网概念非常适用于下一代LAN。

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