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RGAIA: a reconfigurable AWGR based optical data center network. | LitMetric

AI Article Synopsis

  • Data centers (DCs) are under pressure from high-demand applications, leading to bandwidth bottlenecks in traditional electrically switched networks.
  • Optically switched DCNs are proposed as a better solution due to their high bandwidth and ability to dynamically adjust to varying traffic demands, offering improved quality of service.
  • The paper introduces RGAIA, a reconfigurable optical packet switching network that uses advanced optical technology and software-defined networking to enhance performance, showing significant improvements in latency and packet loss.

Article Abstract

Benefitting from the cost-effective and flexible interconnection between computing nodes and storing infrastructures, various applications and services are deployed in data centers (DCs). These traffic-boosting applications put tremendous pressures on current electrically switched DC networks (DCNs) which suffer the bandwidth bottleneck. Benefitting from the data-rate and format transparency, the optically switched DCN with intrinsic high-bandwidth characteristics is a promising solution to update the hierarchical electrical DCNs with bandwidth limitations. Moreover, the applications deployed in DCNs with mixed traffic characteristics require dynamic quality of service (QoS) provisioning. Optical DCNs thus need to be designed in a flexible topology with the capability of bandwidth reconfigurability to adapt the variety of the traffic. In this paper, we propose and experimentally investigate a reconfigurable optical packet switching DCN named RGAIA, based on flexible top of racks (ToRs) and fast optical switch, where the optical switch is implemented by tunable transceiver combing with arrayed waveguide grating router (AWGR). Under the management of the designed software defined network (SDN) control plane, RGAIA can dynamically distribute the wavelength resource and then reconfigure the bandwidth in real-time based on the monitored traffic characteristics. Experimental assessments validate RGAIA improving performance of 37% and 66% in latency and packet loss, respectively, compared with the network with rigid interconnections at the traffic load of 0.8.

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Source
http://dx.doi.org/10.1364/OE.457527DOI Listing

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