DocumentCode :
1857514
Title :
Pipelined operation of image capturing and processing
Author :
Chang, Chi-Jeng ; Huang, Zen-Yi ; Li, Hsin-Yen ; Hu, Kai-Ting ; Tseng, Wen-Chih
Author_Institution :
Dept. of Ind. Edu., Nat. Taiwan Normal Univ., Taiwan
fYear :
2005
fDate :
11-15 July 2005
Firstpage :
275
Abstract :
This paper presents an Field Programmable gate Array (FPGA) integrated architecture to perform a pipelined operations of image capturing, convolution and sorting, which are usually done serially. When pixels serially coming from image sensor pile up a first n×n window, a convolution with selected coefficient of n×n matrix can be started to obtain a target image pixel. After the target image pixels pile up another n×n window again. Maheshwari sorting is performed and three values (max, mid, min) are obtained simultaneously, ready for next processing. Convolution and sorting help further filtering image noises, such as dark current noise and Fixed Pattern Noise (FPN) in CMOS image sensor. This is one of the main reasons that make the FPGA integrated image processing device demonstrate a higher image qualities. A faster capturing speed is also gained due to using hardware-oriented FPGA instead of ordinary software-programmed 8051 series microprocessor.
Keywords :
CMOS image sensors; convolution; digital signal processing chips; field programmable gate arrays; image processing; pipeline processing; sorting; CMOS image sensor pile; FPGA integrated image processing device; Maheshwari sorting; convolution; dark current noise; field programmable gate array integrated architecture; filtering image noises; fixed pattern noise; hardware-oriented FPGA; image capturing speed; pipelined operation; software-programmed 8051 series microprocessor; target image pixel pile; CMOS image sensors; Convolution; Dark current; Field programmable gate arrays; Filtering; Image processing; Image quality; Image sensors; Pixel; Sorting;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nanotechnology, 2005. 5th IEEE Conference on
Print_ISBN :
0-7803-9199-3
Type :
conf
DOI :
10.1109/NANO.2005.1500749
Filename :
1500749
Link To Document :
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