网络拓扑
光子学
硅光子学
计算机科学
网络数据包
分组交换
地点
电路切换
计算机网络
光开关
端口(电路理论)
拓扑(电路)
计算机体系结构
电信
电子工程
分布式计算
电气工程
工程类
材料科学
哲学
光电子学
语言学
作者
Cyriel Minkenberg,Nathan Farrington,Aaron Zilkie,David Nelson,Caroline P. Lai,Dan Brunina,Jerry Byrd,Bhaskar Chowdhuri,Nick Kucharewski,Karl Muth,A.S. Nagra,Germán Rodríguez,David Rubi,Thomas Schrans,Pradeep Srinivasan,Yeong Wang,Chiang Yeh,Andrew Rickman
标识
DOI:10.1364/jocn.10.00b126
摘要
Breakthroughs in silicon photonics are changing the economics of network hardware and are enabling new directions in computer networking, compelling us to reexamine our previous assumptions regarding computer and network architectures. One such area that bears further study is the choice of network topology in a world where the distance between nodes is largely irrelevant, and where there is no inherent economic advantage to spatial locality. Network architects should be able to select topologies based on their merits and not merely from tradition. Combined with relaxed system-level packaging constraints, silicon photonics will likely lead to future datacenter architectures that look very different from today's solutions. We present the design and implementation of Topanga, a packet switch optoASIC with the requisite technologies to free datacenter topologies from constraints induced by limited electrical reach. By means of our platform for integrating silicon photonics inside the package, Topanga provides optical I/O with lower energy per bit at lower cost per port than existing solutions.
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