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9856 The Chameleon Architecture for Streaming DSP Applications
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Smit, G.J.M. and Kokkeler, A.B.J. and Wolkotte, P.T. and Hölzenspies, P.K.F. and van de Burgwal, M.D. and Heysters, P.M. (2007) The Chameleon Architecture for Streaming DSP Applications. EURASIP Journal on Embedded Systems, 2007. 78082. ISSN 1687-3955

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Official URL: http://dx.doi.org/10.1155/2007/78082

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Abstract

We focus on architectures for streaming DSP applications such as wireless baseband processing and image processing. We aim at a single generic architecture that is capable of dealing with different DSP applications. This architecture has to be energy efficient and fault tolerant. We introduce a heterogeneous tiled architecture and present the details of a domain-specific reconfigurable tile processor called Montium. This reconfigurable processor has a small footprint (1.8 mm$^2$ in a 130 nm process), is power efficient and exploits the locality of reference principle. Reconfiguring the device is very fast, for example, loading the coefficients for a 200 tap FIR filter is done within 80 clock cycles. The tiles on the tiled architecture are connected to a Network-on-Chip (NoC) via a network interface (NI). Two NoCs have been developed: a packet-switched and a circuit-switched version. Both provide two types of services: guaranteed throughput (GT) and best effort (BE). For both NoCs estimates of power consumption are presented. The NI synchronizes data transfers, configures and starts/stops the tile processor. For dynamically mapping applications onto the tiled architecture, we introduce a run-time mapping tool.

Item Type:Article
Research Group:EWI-CAES: Computer Architecture for Embedded Systems
Research Program:CTIT-WiSe: Wireless and Sensor Systems
Research Project:4S: Smart Chips for Smart Surroundings, RUM: Run-time mapping to heterogeneous architectures, Chameleon: Reconfigurable computing in hand-held multimedia computers
ID Code:9856
Status:Published
Deposited On:14 August 2007
Refereed:Yes
International:Yes
More Information:statisticsmetis

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