FAN Qiao-yun, ZHANG Guang-jun. Spot centroiding algorithm for discrete noise image and its hardware implementation[J]. Editorial Office of Optics and Precision Engineering, 2011,19(12): 2992-2998
FAN Qiao-yun, ZHANG Guang-jun. Spot centroiding algorithm for discrete noise image and its hardware implementation[J]. Editorial Office of Optics and Precision Engineering, 2011,19(12): 2992-2998 DOI: 10.3788/OPE.20111912.2992.
Spot centroiding algorithm for discrete noise image and its hardware implementation
A spot centroiding algorithm immune from noise pixels is proposed to improve the existing centroiding algorithms that can not process images with discrete noise pixels directly
and it is achieved by a Field Programmable Gate Array(FPGA). This algorithm does not depend on noise pre-process or post-process to eliminate noise pixels. Firstly
the algorithm marks the background pixel
noise pixel and the spot pixel
respectively
then each pixel is marked after it is compared with the neighbouring one. At the same time
centroid parameters that belong to the same spot are accumulated
while the real noise pixel is bypassed. Compared with currently existing algorithms
this method takes full advantage of the parallel processing ability of the FPGA. It can extract spot centroid coordinates and eliminate the noise pixel simultaneously when the image pixel is output
the pre-process image is not needed and the storage space is saved. This algorithm is especially suitable for processing the spot image with discrete and high-brightness noises caused by long exposure time.
关键词
Keywords
references
张辉,袁家虎,刘恩海. CCD噪声对星敏感器星点定位精度的影响[J]. 红外与激光工程, 2006, 35(5):629-634. ZHANG H, YUAN J H, LIU E H. CCD noise effects on position accuracy of star sensor[J]. Infrared and Laser Engineering, 2006, 35(5):629-634. (in Chinese)[2] GIANCARL R, DOMENICO A. Enhancement of the centroiding algorithm for star tracker measure refinement[J]. ACTA Astronautica, 2003,50:135-147.[3] BURNS R B, SHAH J, HONG C, et al. Object location and centroiding techniques with CMOS active pixel sensors. IEEE Transactions on Electron Devices, 2003, 50(12):2369-2377.[4] 李广泽,刘金国,郝志航. 基于双正小波的星点细分定位方法研究[J]. 光学 精密工程,2005,13(增):217-221. LI G Z, LIU J G, HAO Z H. Research of subpixel subdivision location algorithm for star image based on biothogonal wavelet[J]. Opt. Precision Eng., 2005,13(Supp.):217-221. (in Chinese)[5] 刘丹平,胡渝. 提高光斑图像质心精度的去噪方法[J]. 光电工程,2005,32(8):56-58. LIU D P, HU Y. Laser speckle image denoising with high accuracy centroid[J]. Opto-Electronic Engineering, 2005, 32(8):56-58. (in Chinese)[6] 谌廷政,吕海宝. CCD细分技术方法研究与应用[J]. 光学学报,2002,22(11):1396-1399. CHEN T Z, LV H B. CCD subdivision method and application[J]. Acta Optical Sinica, 2002, 22(11):1396-1399. (in Chinese)[7] 李德良,阮锦. 一种适用于星敏感器的星点提取方法[J]. 激光与红外,2009,39(12):1348-1350. LI D L, RUAN J. Method adapting to the star sensors star extraction[J]. Laser&Infrared, 2009, 39(12):1348-1350. (in Chinese)[8] 肖锋钢,刘建国,曾淙泳,等. 一种新型提高光斑图像质心精度的去噪方法[J]. 计算机应用研究,2008,25(12):3683-3685. XIAO F G, LIU J G, ZENG C Y, et al. New denosing method for improving speckle image centroid accuracy[J]. Application Reaserch of Computers, 2008, 25(12):3683-3685. (in Chinese)[9] 陈兴美,严壮志. 基于FPGA的红外光斑中心实时检测[J]. 红外与激光工程,2005,34(4):401-405. CHENG X M, YAN ZH ZH. Real-time detection of infrared spot based on FPGA[J]. Infared and Laser Engineering, 2005, 34(4):401-405. (in Chinese)[10] 张广军,江洁,郝雪涛,等. 用于星敏感器的星点图像定位方法及装置:中国,03105743.8. ZHANG G J, JIANG J, HAO X T, et al.. Star centrionding method and device for star sensor:China,03105743.8.(in Chinese)[11] 张广军,江洁,樊巧云,等. 快速高精度光斑图像质心定位方法及装置:中国,200610114199.6. ZHANG G J, JIANG J, FAN Q Y, et al. Rapid and high precision centrionding method and system for spot image:China,200610114199.6.(in Chinese)
Digital integration of PMSM speed controller based on FPGA
Color-recurrent system in high-definition laser display
Information Sciences Auto-exposure for CCD camera based on FPGA
Identification of robust blur parameter for uniform linear motion blurred images
Related Author
LV Guo-qiang
LIANG Jian-tian
LU Yun-long
ZHANG Ying-song
FANG Yong
DENG Yong-ting
LI Hong-wen
WANG Jian-li
Related Institution
Academy of Photoelectric Technology, Hefei University of Technology
School of Instrument Science and Opto-electronics Engineering, Hefei University of Technology
Key Laboratory of Special Display Technology of the Ministry of Education, National Engineering Laboratory of Special Display Technology, National Key Laboratory of Advanced Display Technology, Hefei University of Technology, Hefei 230009, China
University of Chinese Academy of Sciences
Changchun Institute of Optics, Fine Mechanics and Physics, Chinese Academy of Sciences