DocumentCode :
2641778
Title :
Process Variation Tolerant Low Power DCT Architecture
Author :
Banerjee, Nilanjan ; Karakonstantis, Georgios ; Roy, Kaushik
Author_Institution :
Purdue Univ., West Lafayette, IN
fYear :
2007
fDate :
16-20 April 2007
Firstpage :
1
Lastpage :
6
Abstract :
2D discrete cosine transform (DCT) is widely used as the core of digital image and video compression. In this paper, the authors present a novel DCT architecture that allows aggressive voltage scaling by exploiting the fact that not all intermediate computations are equally important in a DCT system to obtain "good" image quality with peak signal to noise ratio (PSNR) > 30 dB. This observation has led us to propose a DCT architecture where the signal paths that are less contributive to PSNR improvement are designed to be longer than the paths that are more contributive to PSNR improvement It should also be noted that robustness with respect to parameter variations and low power operation typically impose contradictory requirements in terms of architecture design. However, the proposed architecture lends itself to aggressive voltage scaling for low-power dissipation even under process parameter variations. Under a scaled supply voltage and/or variations in process parameters, any possible delay errors would only appear from the long paths that are less contributive towards PSNR improvement, providing large improvement in power dissipation with small PSNR degradation. Results show that even under large process variation and supply voltage scaling (0.8V), there is a gradual degradation of image quality with considerable power savings (62.8%) for the proposed architecture when compared to existing implementations in 70 nm process technology
Keywords :
data compression; discrete cosine transforms; image coding; transform coding; video coding; 2D discrete cosine transform; 70 nm; image compression; image quality; process variation; video compression; voltage scaling; Computer architecture; Degradation; Digital images; Discrete cosine transforms; Image quality; Noise robustness; PSNR; Signal design; Video compression; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Design, Automation & Test in Europe Conference & Exhibition, 2007. DATE '07
Conference_Location :
Nice
Print_ISBN :
978-3-9810801-2-4
Type :
conf
DOI :
10.1109/DATE.2007.364664
Filename :
4211869
Link To Document :
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