DocumentCode :
3335885
Title :
FPGA realization of DA-based 2D-Discrete Wavelet Transform for the proposed image compression approach
Author :
Shah, D.U. ; Vithlani, C.H.
fYear :
2011
fDate :
8-10 Dec. 2011
Firstpage :
1
Lastpage :
6
Abstract :
The lack of disk space seems to be a major challenge during transmission and storage of raw images, which in turn pushes the demand for an efficient technique for compression of images. Although, lot of compression techniques are available today, any upcoming technique which is faster, memory efficient and simple surely has the greatest probability to hit the user requirements. In this paper, we have developed wavelet-based image compression algorithm using well-known Distributed Arithmetic (DA) technique. Here, to increase the compression rate, the reduction of wavelet coefficients is carried out in each level of computation with the help of RW block proposed in the paper. After computing the DWT coefficients, we apply DPCM (Differential pulse-code modulation) which is a transformation technique for increasing the compressibility of an image. Finally, the transformed coefficients are given to Huffman-encoder that is designed by merging the lowest probable symbols in such a way that, the images will get compressed. For decompression, the Huffman decoding procedure is applied in the compressed image. Furthermore, the inverse DPCM and inverse DWT is applied on the decoded data to obtain the decompressed image. For implementation, the DA-based wavelet is simulated in Active HDL tool and the final design is verified with verilog test benches.
Keywords :
data compression; decoding; differential pulse code modulation; discrete wavelet transforms; distributed arithmetic; field programmable gate arrays; hardware description languages; image coding; DA-based 2D-discrete wavelet transform; DPCM; FPGA realization; Huffman encoder; Verilog; active HDL tool; decoding procedure; differential pulse-code modulation; distributed arithmetic technique; image compression approach; image decompression; Computer architecture; Discrete wavelet transforms; Hardware design languages; Image coding; Very large scale integration; Wavelet coefficients; Differential Pulse-Code Modulation (DPCM); Discrete Wavelet Transform; Distributed Arithmetic; Huffman-coding; Image compression;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering (NUiCONE), 2011 Nirma University International Conference on
Conference_Location :
Ahmedabad, Gujarat
Print_ISBN :
978-1-4577-2169-4
Type :
conf
DOI :
10.1109/NUiConE.2011.6153233
Filename :
6153233
Link To Document :
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