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UK funding (647 712 £) : Briser le goulot d’étranglement du cuivre : l’architecture informatique et les implications énergétiques de l’interconnexion photonique Ukri01/10/2010 UK Research and Innovation, Royaume Uni

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Texte

Briser le goulot d’étranglement du cuivre : l’architecture informatique et les implications énergétiques de l’interconnexion photonique

Abstract The provision of future services in the digital economy is reliant on achieving more power efficient computers. Recent bandwidth improvements in electronic interconnects have only been achieved at the expense of dramatic increases in latency and power consumption [19]. Photonic technologies appear essential to make chip-to-chip communication sustainable for ever-higher data rates due to inherently lower power operation. Recent advances in silicon photonics, photonic printed circuit boards (PCB) and 3D integration technologies indicate great promise for short distance photonics. However, given the radical changes in computer design brought about by chip multiprocessors (CMP) and the fundamental differences between electronic and photonic communications, the design implications for complete computer systems are not clear. The proposed research will study the implications of upcoming photonic technologies on the power consumption and architecture of large computer systems such as high performance computers and data centres. The uniqueness of the proposal is its method and the holistic results that it should produce. I will start with a firm scientific foundation based on characterisation of emerging photonic devices leading to models of existing and predicted future components. FPGA-based emulation will enable investigation of complete multi-chip, multi-core computer systems and interconnect running at around 1/100th of real time. The outcome will be the knowledge to build large computer systems optimised for minimum power consumption. This multidisciplinary research therefore underpins several EPSRC themes: digital economy, next-generation healthcare and energy efficiency as well as responding to the EPSRC signposted Moore-for-Less microelectronic grand challenge.
Category Fellowship
Reference EP/I004157/1
Status Closed
Funded period start 01/10/2010
Funded period end 01/06/2011
Funded value £647 712,00
Source https://gtr.ukri.org/projects?ref=EP%2FI004157%2F1

Participating Organisations

University of Cambridge
Xilinx Research
Microsoft Research
Xilinx Corp

Cette annonce se réfère à une date antérieure et ne reflète pas nécessairement l’état actuel. L’état actuel est présenté à la page suivante : University of Cambridge, Cambridge, Royaume Uni.