DocumentCode :
1286825
Title :
SPRINT: Scalable photonic switching fabric for high-performance computing (HPC)
Author :
Neel, Brian ; Morris, Randy ; Ditomaso, Dominic ; Kodi, Avinash
Author_Institution :
Dept. of Electr. & Comput. Sci., Ohio Univ., Athens, OH, USA
Volume :
4
Issue :
9
fYear :
2012
Abstract :
High-performance computing systems and datacenters will interconnect hundreds to thousands of heterogeneous general purpose or specialized cores in the future. As the number of network end-point sockets scales exponentially, the underlying communication fabric must deliver high bandwidth with low power and reduced switching complexity. While high-radix routers enable smaller diameter networks, the penalty is in increased switching complexity and router power. In this paper, we propose SPRINT (scalable photonic reconfigurable interconnect), which can scale to a large number of cores using photonic switching implemented with silicon micro-ring resonators (MRRs). MRRs are low power, high bandwidth photonic switching devices that can be arranged to function similarly to a high-radix router with reduced complexity and power. We will first show the design of a 64 core cluster using optical interconnects and electrical packet switching. To build scalable switching crossconnects, we investigate the design of 256-, 512- and 1024-socket versions of SPRINT connected to function as passive arrayed-waveguide gratings. Our proposed switching crossconnect with single and dual micro-rings minimizes the hop count to 4 for a 1024 core network while reducing the power dissipation, increasing the bandwidth and reducing the switching complexity.
Keywords :
arrayed waveguide gratings; computer centres; low-power electronics; optical interconnections; optical resonators; optical waveguides; packet switching; photonic switching systems; telecommunication network routing; HPC system; SPRINT; core cluster design; data centers; diameter networks; electrical packet switching; high bandwidth photonic switching devices; high-performance computing systems; high-radix routers; network end-point sockets; optical interconnects; passive arrayed-waveguide gratings; power dissipation; reduced switching complexity; scalable photonic reconfigurable interconnect; scalable photonic switching fabric; scalable switching crossconnects; silicon microring resonators; Bandwidth; Optical fiber communication; Optical switches; Optical waveguides; Optimized production technology; Datacenters; HPC; Nanophotonics;
fLanguage :
English
Journal_Title :
Optical Communications and Networking, IEEE/OSA Journal of
Publisher :
ieee
ISSN :
1943-0620
Type :
jour
DOI :
10.1364/JOCN.4.000A38
Filename :
6305039
Link To Document :
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