Architectures for Green routers

V. Prasanna
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Abstract

As the Information and Communication (ICT) infrastructure continues to evolve, significant energy dissipation is incurred in the core routers. Core router performance will soon be limited by the power density. About two-thirds of the power dissipation in a router is in layer 3. Packet forwarding, classification, etc. contribute significantly to this. This talk explores architectures and algorithms for network functions including deep packet inspection and packet classification in core routers. We propose energy efficient designs to realize the “Green Internet” vision. We illustrate the performance improvements for such systems and demonstrate the suitability of FPGAs for these computations. We show that SRAM based solutions combined with FPGA based architectures lead to high throughput as well as reduced power dissipation compared with the state of the art solutions based TCAMs.
绿色路由器的架构
随着信息通信(ICT)基础设施的不断发展,核心路由器会产生大量的能量损耗。核心路由器的性能很快就会受到功率密度的限制。路由器中大约三分之二的功耗发生在第三层。报文转发、分类等对这一点有重要贡献。本讲座探讨了核心路由器中网络功能的架构和算法,包括深度包检测和包分类。我们提出节能设计,以实现“绿色互联网”的愿景。我们说明了这种系统的性能改进,并证明了fpga对这些计算的适用性。我们表明,与基于tcam的最先进解决方案相比,基于SRAM的解决方案与基于FPGA的架构相结合可以实现高吞吐量并降低功耗。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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