Opsquare: A flat DCN architecture based on flow-controlled optical packet switches
Aiming at solving the scaling issues of bandwidth and latency in current hierarchical data center network (DCN) architectures, we propose and investigate a novel optical flat DCN architecture in which the number of interconnected ToRs scales as the square of the optical packet switches’ (OPS) port c...
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Published in | Journal of optical communications and networking Vol. 9; no. 4; pp. 291 - 303 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Optica Publishing Group
01.04.2017
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Subjects | |
Online Access | Get full text |
ISSN | 1943-0620 1943-0639 |
DOI | 10.1364/JOCN.9.000291 |
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Abstract | Aiming at solving the scaling issues of bandwidth and latency in current hierarchical data center network (DCN) architectures, we propose and investigate a novel optical flat DCN architecture in which the number of interconnected ToRs scales as the square of the optical packet switches’ (OPS) port count (OPSquare). The proposed flat DCN architecture consists of two parallel interand intra-cluster networks that are built on a single-hop OPS with nanosecond time and wavelength switching for efficient statistical multiplexing operations. Fast optical flow control is implemented for solving packet contentions that may occur at the buffer-less optical switches. The performance of OPSquare DCN in terms of scalability, packet loss, latency, and throughput is assessed by a numerical simulation employing OMNeT++ under realistic data center (DC) traffic. The results report a server-to-server latency of less than 2 /<spl mu>s (including packet retransmission), a packet loss <10 −5 at a load of 0.4, and aDC size of 10,240 servers with a ToR buffer size equal to 50 KB for all traffic patterns. Moreover, the cost and power consumption of the OPSquare DCN have been studied and compared with fat-tree DCN based on electrical switches and H-LION connected by an arrayed wave guide grating router (AWGR). The results indicate 23.8% and 39% cost and power savings, respectively, for the OPSquare DCN supporting 160,000 servers with respect to the fat-tree DCN. The OPSquare has a cost saving of 56% compared with H-LION for a 160,000-server DCN. |
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AbstractList | Aiming at solving the scaling issues of bandwidth and latency in current hierarchical data center network (DCN) architectures, we propose and investigate a novel optical flat DCN architecture in which the number of interconnected ToRs scales as the square of the optical packet switches’ (OPS) port count (OPSquare). The proposed flat DCN architecture consists of two parallel interand intra-cluster networks that are built on a single-hop OPS with nanosecond time and wavelength switching for efficient statistical multiplexing operations. Fast optical flow control is implemented for solving packet contentions that may occur at the buffer-less optical switches. The performance of OPSquare DCN in terms of scalability, packet loss, latency, and throughput is assessed by a numerical simulation employing OMNeT++ under realistic data center (DC) traffic. The results report a server-to-server latency of less than 2 /<spl mu>s (including packet retransmission), a packet loss <10 −5 at a load of 0.4, and aDC size of 10,240 servers with a ToR buffer size equal to 50 KB for all traffic patterns. Moreover, the cost and power consumption of the OPSquare DCN have been studied and compared with fat-tree DCN based on electrical switches and H-LION connected by an arrayed wave guide grating router (AWGR). The results indicate 23.8% and 39% cost and power savings, respectively, for the OPSquare DCN supporting 160,000 servers with respect to the fat-tree DCN. The OPSquare has a cost saving of 56% compared with H-LION for a 160,000-server DCN. |
Author | Raz, Oded Yan, Fulong Miao, Wang Calabretta, Nicola |
Author_xml | – sequence: 1 givenname: Fulong surname: Yan fullname: Yan, Fulong organization: School of Electronics and Information Engineering, Beihang University, Beijing 100191, China, and he was also a visiting Ph.D. student with the Electro-Optical Communications Group, COBRA Research Institute, Eindhoven University of Technology, 5612 AZ Eindhoven, The Netherlands – sequence: 2 givenname: Wang surname: Miao fullname: Miao, Wang organization: Electro-Optical Communications Group, COBRA Research Institute, Eindhoven University of Technology, 5612 AZ Eindhoven, The Netherlands – sequence: 3 givenname: Oded surname: Raz fullname: Raz, Oded organization: Electro-Optical Communications Group, COBRA Research Institute, Eindhoven University of Technology, 5612 AZ Eindhoven, The Netherlands – sequence: 4 givenname: Nicola surname: Calabretta fullname: Calabretta, Nicola organization: Electro-Optical Communications Group, COBRA Research Institute, Eindhoven University of Technology, 5612 AZ Eindhoven, The Netherlands |
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SubjectTerms | Data center architecture; OMNeT++ simulation;Optical flow control; Optical packet switch Optical buffering Optical interconnections Optical packet switching Optical switches Servers Transceivers Wavelength division multiplexing |
Title | Opsquare: A flat DCN architecture based on flow-controlled optical packet switches |
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