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
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;
Journal_Title :
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
DOI :
10.1109/TCAD.2011.2157157