DocumentCode
1324067
Title
Physical-Layer Modeling and System-Level Design of Chip-Scale Photonic Interconnection Networks
Author
Chan, Jeffrey ; Hendry, Gilbert ; Bergman, Keren ; Carloni, Luca P.
Author_Institution
Dept. of Electr. Eng., Columbia Univ., New York, NY, USA
Volume
30
Issue
10
fYear
2011
Firstpage
1507
Lastpage
1520
Abstract
Photonic technology is becoming an increasingly attractive solution to the problems facing today´s electronic chip-scale interconnection networks. Recent progress in silicon photonics research has enabled the demonstration of all the necessary optical building blocks for creating extremely high-bandwidth density and energy-efficient links for on-chip and off-chip communications. From the feasibility and architecture perspective however, photonics represents a dramatic paradigm shift from traditional electronic network designs due to fundamental differences in how electronics and photonics function and behave. As a result of these differences, new modeling and analysis methods must be employed in order to properly realize a functional photonic chip-scale interconnect design. In this paper, we present a methodology for characterizing and modeling fundamental photonic building blocks which can subsequently be combined to form full photonic network architectures. We also describe a set of tools which can be utilized to assess the physical-layer and system-level performance properties of a photonic network. The models and tools are integrated in a novel open-source design and simulation environment. We present a case study of two different photonic networks-on-chip to demonstrate how our improved understanding and modeling of the physical-layer details of photonic communications can be used to better understand the system-level performance impact.
Keywords
elemental semiconductors; integrated optoelectronics; network-on-chip; optical design techniques; optical interconnections; silicon; IEEE; Si; electronic chip-scale photonic interconnection networks; energy-efficient links; high-bandwidth density; off-chip communications; open-source design; photonic communications; photonic network architectures; photonic networks-on-chip; physical-layer modeling; silicon photonics; system-level design; Computational modeling; Multiprocessor interconnection; Optical crosstalk; Optical losses; Optical waveguides; Photonics; Solid modeling; Optical communications; optical crosstalk; optical losses; photonic interconnection networks; simulation software; system analysis and design;
fLanguage
English
Journal_Title
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
Publisher
ieee
ISSN
0278-0070
Type
jour
DOI
10.1109/TCAD.2011.2157157
Filename
6022004
Link To Document