DocumentCode
1650038
Title
Minimizing Energy by Achieving Optimal Sparseness in Parallel Adders
Author
Aktan, Mustafa ; Baran, Dursun ; Oklobdzija, Vojin G.
Author_Institution
Tera-Hz Mikroelektron. Ltd., Ankara, Turkey
fYear
2015
Firstpage
10
Lastpage
17
Abstract
Carry tree sparseness is used in high-performance binary adders to achieve better energy-delay trade-off. To determine the energy optimal degree of sparseness, a detailed analysis is performed in this work. An analytical expression for the upper bound of sparseness is derived. The effect of increased sparseness on partial sum block and total energy is explored on 32-, 64-, 128-, and 256-bit adders. Higher degrees of sparseness in the carry generation block is achieved by employing parallel adders in the sum block instead of serial ripple carry adders. 64-bit adders with various sparseness degrees using leading addition algorithms are synthesized and optimized with a standard cell library in 45nm CMOS technology. Post layout simulations revealed that the optimal sparse carry tree adders provide up to 50% and 22% improvement in energy at same performance over full carry tree Kogge-Stone and Ladner-Fischer adder designs, respectively.
Keywords
adders; energy conservation; power aware computing; CMOS technology; Kogge-Stone adder design; Ladner-Fischer adder design; carry generation block; carry tree sparseness; complimentary metal oxide semiconductors; energy minimization; energy-delay trade-off; high-performance binary adders; leading addition algorithms; parallel adders; partial sum block; serial ripple carry adders; size 45 nm; sparseness degree; sparseness upper bound; Adders; CMOS integrated circuits; Complexity theory; Hardware; Logic gates; Wires; Wiring; Arithmetic and Logic Structures; Binary Adders; Low-Power Design; Sparseness; VLSI;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Arithmetic (ARITH), 2015 IEEE 22nd Symposium on
Conference_Location
Lyon
ISSN
1063-6889
Print_ISBN
978-1-4799-8663-7
Type
conf
DOI
10.1109/ARITH.2015.13
Filename
7203790
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