Title :
Torus-Topology Data Center Network Based on Optical Packet/Agile Circuit Switching with Intelligent Flow Management
Author :
Kitayama, Ken-ichi ; Yue-Cai Huang ; Yoshida, Yuki ; Takahashi, Ryo ; Segawa, Toru ; Ibrahim, Salah ; Nakahara, Tatsushi ; Suzaki, Yasumasa ; Hayashitani, Masahiro ; Hasegawa, Yohei ; Mizukoshi, Yasuhiro ; Hiramatsu, Atsushi
Author_Institution :
Dept. of Electr., Electron. & Inf. Eng., Osaka Univ., Suita, Japan
Abstract :
We review our work on an intra-data center (DC) network based on co-deployment of optical packet switching (OPS) and optical circuit switching (OCS), conducted within the framework of a five-year-long national R&D program in Japan (~March 2016). For the starter, preceding works relevant to optical switching technologies in intra-DC networks are briefly reviewed. Next, we present the architecture of our torus-topology OPS and agile OCS intra-DC network, together with a new flow management concept, where instantaneous optical path on-demand, so-called Express Path is established. Then, our hybrid optoelectronic packet router (HOPR), which handles 100 Gbps (25 Gbps × 4-wavelength) optical packets and its enabling device and sub-system technologies are presented. The HOPR aims at a high energy-efficiency of 0.09 [W/Gbps] and low-latency of 100 ns regime. Next, we provide the contention resolution strategies in the OPS and agile OCS network and present the performance analysis with the simulation results. It is followed by the discussions on the power consumption of intra-DC networks. We compare the power consumption and the throughput of a conventional fat-tree topology with the N-dimensional torus topology. Finally, for further power saving, we propose a new scheme, which shuts off HOPR buffers according to the server operation status.
Keywords :
computer centres; optical switches; packet switching; power consumption; telecommunication network routing; telecommunication network topology; HOPR; Japan; OCS intra-DC network; OCS network; OPS network; R&D program; bit rate 100 Gbit/s; fat-tree topology; hybrid optoelectronic packet router; intelligent flow management; intra-DC networks; intra-data center network; optical circuit switching; optical packet switching; optical packet-agile circuit switching; power consumption; torus-topology OPS; torus-topology data center network; Optical buffering; Optical fiber networks; Optical packet switching; Optical switches; Power demand; Topology; Ultrafast optics; Data center; Data center (DC); Energy efficiency; Network topology; Packet switching; Switching system; Virtual machine; energy efficiency; network topology; packet switching; switching system; virtual machine (VM);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2015.2394384