DocumentCode :
25306
Title :
A Memory-Efficient Scalable Architecture for Lifting-Based Discrete Wavelet Transform
Author :
Yusong Hu ; Ching Chuen Jong
Author_Institution :
Integrated Syst. Res. Lab., Nanyang Technol. Univ., Singapore, Singapore
Volume :
60
Issue :
8
fYear :
2013
fDate :
Aug. 2013
Firstpage :
502
Lastpage :
506
Abstract :
In this brief, we propose a new parallel lifting-based 2-D DWT architecture with high memory efficiency and short critical path. The memory efficiency is achieved with a novel scanning method that enables tradeoff of external memory bandwidth and on-chip memory. Based on the data flow graph of the flipped lifting algorithm, processing units (PUs) are developed for maximally utilizing the inherent parallelism. With S number of PUs, the throughput can be scaled while keeping the latency constant. Compared with the best existing architecture, the proposed architecture requires less memory. For an N × N image, the proposed architecture consumes a total of only 3N + 24S words of transposition memory, temporal memory, and pipeline registers. The synthesized results in a 90-nm CMOS process show that it achieves better area-delay products than the best existing design by 32.3%, 31.5%, and 27.0% when S = 2, 4, and 8, respectively, and by 26%, 26%, and 22% when the overhead for buffering the required overlapped pixels is taken into account.
Keywords :
CMOS memory circuits; data flow graphs; discrete wavelet transforms; parallel architectures; CMOS process; area-delay products; critical path; data flow graph; external memory bandwidth; flipped lifting algorithm; latency constant; lifting-based discrete wavelet transform; memory-efficient scalable architecture; on-chip memory; parallel lifting-based 2D DWT architecture; pipeline registers; processing units; scanning method; size 90 nm; temporal memory; transposition memory; Discrete wavelet transform (DWT); lifting scheme; parallel 2-D DWT architecture; systolic array;
fLanguage :
English
Journal_Title :
Circuits and Systems II: Express Briefs, IEEE Transactions on
Publisher :
ieee
ISSN :
1549-7747
Type :
jour
DOI :
10.1109/TCSII.2013.2268335
Filename :
6553294
Link To Document :
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