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Operation mode based high-level switching activity analysis for power estimation of digital circuits

Authors
Shin, HyunchulLee, Changhee
Issue Date
Jul-2007
Publisher
Oxford University Press
Keywords
low-power design; control signal; power estimation; switching activity
Citation
IEICE Transactions on Communications, v.E90B, no.7, pp 1826 - 1834
Pages
9
Indexed
SCIE
SCOPUS
Journal Title
IEICE Transactions on Communications
Volume
E90B
Number
7
Start Page
1826
End Page
1834
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/43577
DOI
10.1093/ietcom/e90-b.7.1826
ISSN
0916-8516
1745-1345
Abstract
As semiconductor processing technology advances, complex, high density circuits can be integrated in a chip. However, increasing energy consumption is becoming one of the most important limiting factors. Power estimation at the early stage of design is essential since design changes at later stages may significantly lengthen the design period and increase the costs. For efficient power estimation, we analyze the "key" control signals of a digital circuit and develop power models for several operational modes. The trade-off between accuracy and complexity can be made by choosing the number and the complexity of the power models. When compared with those of logic simulation based estimation, experimental results show that 13 to 15 times faster power estimation with an estimation error of about 5% is possible. We have also developed new logic-level power modeling techniques in which logic gates are levelized and several levels are selected to build power model tables. This table based method shows significant improvement in estimation accuracy and a slight improvement in efficiency when compared to a well-known previous method. The average estimation error has been reduced from 13.3% to 3.8%.
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COLLEGE OF ENGINEERING SCIENCES > SCHOOL OF ELECTRICAL ENGINEERING > 1. Journal Articles

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