Title :
Energy-efficient optical crossbars on chip with multi-layer deposited silicon
Author :
Hui Li ; Le Beux, Sebastien ; Nicolescu, Gabriela ; O´Connor, Ian
Author_Institution :
Lyon Inst. of Nanotechnol., Ecole Centrale de Lyon, Ecully, France
Abstract :
The many cores design research community have shown high interest in optical crossbars on chip for more than a decade. Key properties of optical crossbars, namely a) contention-free data routing b) low-latency communication and c) potential for high bandwidth through the use of WDM, motivate several implementations. These implementations demonstrate very different scalability and power efficiency ability depending on three key design factors: a) the network topology, b) the considered layout and c) the insertion losses induced by the fabrication process. The emerging design technique relying on multi-layer deposited silicon allows reducing optical losses, which may lead to significant reduction of the power consumption. In this paper, multi-layer deposited silicon based crossbars are proposed and compared. The results indicate that the proposed ring-based network exhibits, on average, 22% and 51.4% improvement for worst-case and average losses respectively compared to the most power-efficient related crossbars.
Keywords :
coating techniques; energy conservation; integrated circuit layout; network routing; network topology; network-on-chip; optical losses; optical multilayers; power consumption; silicon; wavelength division multiplexing; Si; WDM; contention-free data routing; cores design research community; energy efficiency; fabrication process; high bandwidth potential; insertion losses; layout consideration; low-latency communication; multilayer deposition; network topology; optical crossbars on chip; optical losses reduction; optical network-on-chip; power consumption reduction; power efficiency ability; ring-based network; scalability ability; wavelength division multiplexing; IP networks; Layout; Optical device fabrication; Optical losses; Optical waveguides; Propagation losses; Optical Network on Chip; crossbar; optical loss;
Conference_Titel :
Design Automation Conference (ASP-DAC), 2015 20th Asia and South Pacific
Conference_Location :
Chiba
Print_ISBN :
978-1-4799-7790-1
DOI :
10.1109/ASPDAC.2015.7058996