DocumentCode
2171697
Title
Aelite: A flit-synchronous Network on Chip with composable and predictable services
Author
Hansson, Andreas ; Subburaman, Mahesh ; Goossens, Kees
Author_Institution
Electron. Syst. Group, Eindhoven Univ. of Technol., Eindhoven
fYear
2009
fDate
20-24 April 2009
Firstpage
250
Lastpage
255
Abstract
To accommodate the growing number of applications integrated on a single chip, Networks on Chip (NoC) must offer scalability not only on the architectural, but also on the physical and functional level. In addition, real-time applications require Guaranteed Services (GS), with latency and throughput bounds. Traditionally, NoC architectures only deliver scalability on two of the aforementioned three levels, or do not offer GS. In this paper we present the composable and predictable aelite NoC architecture, that offers only GS, based on flit-synchronous Time Division Multiplexing (TDM). In contrast to other TDM-based NoCs, scalability on the physical level is achieved by using mesochronous or asynchronous links. Functional scalability is accomplished by completely isolating applications, and by having a router architecture that does not limit the number of service levels or connections. We demonstrate how aelite delivers the requested service to hundreds of simultaneous connections, and does so with 5 times less area compared to a state-of-the-art NoC.
Keywords
network routing; network-on-chip; real-time systems; time division multiplexing; NoC architecture; asynchronous links; flit-synchronous time division multiplexing; mesochronous links; network on chip; real-time applications; router architecture; state-of-the-art NoC; Application software; Computer networks; Delay; Interference; Network-on-a-chip; Physics computing; Scalability; Throughput; Time division multiplexing; Virtual colonoscopy;
fLanguage
English
Publisher
ieee
Conference_Titel
Design, Automation & Test in Europe Conference & Exhibition, 2009. DATE '09.
Conference_Location
Nice
ISSN
1530-1591
Print_ISBN
978-1-4244-3781-8
Type
conf
DOI
10.1109/DATE.2009.5090666
Filename
5090666
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