This paper proposes and demonstrates a flexible-bandwidth optical interconnect architecture for data centers exploiting wavelength routing in arrayed waveguide grating routers and fast tunable lasers. The proposed architecture provides hierarchical all-to-all connectivity with low contention and dynamic interconnection reconfiguration for higher bandwidth provisioning between hot spots. An eight-cluster core network experiment testbed with hierarchical all-to-all interconnection shows 1.77x throughput increase and 1.19x network energy efficiency improvement in the case of intercluster hot-spot traffic, while guaranteeing more than 97% throughput for the portion of the traffic with uniform random distribution.
Experimental Demonstration of Flexible Bandwidth Optical Data Center Core Network With All-to-All Interconnectivity / Cao, Z; Proietti, R; Clements, M; Yoo, Sj. - In: JOURNAL OF LIGHTWAVE TECHNOLOGY. - ISSN 0733-8724. - 33:8(2015), pp. 1578-1585. [10.1109/JLT.2014.2387205]
Experimental Demonstration of Flexible Bandwidth Optical Data Center Core Network With All-to-All Interconnectivity
Proietti R;
2015
Abstract
This paper proposes and demonstrates a flexible-bandwidth optical interconnect architecture for data centers exploiting wavelength routing in arrayed waveguide grating routers and fast tunable lasers. The proposed architecture provides hierarchical all-to-all connectivity with low contention and dynamic interconnection reconfiguration for higher bandwidth provisioning between hot spots. An eight-cluster core network experiment testbed with hierarchical all-to-all interconnection shows 1.77x throughput increase and 1.19x network energy efficiency improvement in the case of intercluster hot-spot traffic, while guaranteeing more than 97% throughput for the portion of the traffic with uniform random distribution.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2972175