DocumentCode :
2013297
Title :
An Efficient Motion Adaptive De-interlacing and Its VLSI Architecture Design
Author :
Sun, Hongbin ; Zheng, Nanning ; Ge, Chenyang ; Wang, Dong ; Ren, Pengju
Author_Institution :
Inst. of Artificial Intell. & Robot., Xi´´an an Jiaotong Univ. No. 28, Xianning
fYear :
2008
fDate :
7-9 April 2008
Firstpage :
455
Lastpage :
458
Abstract :
This paper presents an efficient motion adaptive de-interlacing technique that consists of two main steps, i.e. 4-field extended Gaussian filtering motion detection and adjustable window ELA de-interlacing. Four consecutive interlaced fields are used to detect motion accurately. With a Gaussian filter, the motion detection can eliminate the influence of noise. An adjustable window ELA de-interlacing is adopt to process motion pixels, which can reconstruct image with high quality even in areas with horizontal edge and texture. Experimental results show that the proposed algorithm outperforms previous methods both objectively and subjectively. Based on our method, the high speed VLSI architecture has been designed and implemented. The operating frequency of the chip is 126 MHz that it could process format conversion in real-time for both SDTV and HDTV applications.
Keywords :
Gaussian processes; VLSI; digital television; filtering theory; high definition television; image motion analysis; image reconstruction; image texture; integrated circuit design; logic design; Gaussian filtering; HDTV application; SDTV application; VLSI architecture design; frequency 126 MHz; image quality; image reconstruction; image texture; motion adaptive deinterlacing; motion detection; motion pixel; Adaptive filters; Filtering; Frequency conversion; Gaussian noise; HDTV; Image edge detection; Image reconstruction; Motion detection; Pixel; Very large scale integration; De-interlacing; Digital Video Processing; ELA; Interpolation; VLSI;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Symposium on VLSI, 2008. ISVLSI '08. IEEE Computer Society Annual
Conference_Location :
Montpellier
Print_ISBN :
978-0-7695-3291-2
Electronic_ISBN :
978-0-7695-3170-0
Type :
conf
DOI :
10.1109/ISVLSI.2008.46
Filename :
4556839
Link To Document :
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