Semiconductor Optoelectronics, Volume. 43, Issue 2, 377(2022)
Design and Implementation of FPGA-Based Image Adaptive AWB System
[1] [1] Gao Shaobing, Ren Yanze, Zhang Ming, et al. Combining bottom-up and top-down visual mechanisms for color constancy under varying illumination[J]. IEEE Trans. on Image Processing, 2019, 28(9): 4387-4400.
[2] [2] Sun Xinyu, Xie Kai, Lin Sen, et al. Research on calculation method based on gray edge color constant[C]// Adv. Electronic Mater., Computers and Software Engineering, Shenzhen, 2020.
[5] [5] Md A H, Akbar S A. Color constancy algorithm for mixed-illuminant scene images[J]. IEEE Access, 2018, 6: 8964-8976.
[6] [6] Ho-Hyoung, ChoiByoung-Ju Yun. Deep learning-based computational color constancy with convoluted mixture of deep experts (CMoDE) fusion technique[J]. IEEE Access, 2020, 188: 309-320.
[8] [8] Chi Chungting, Wu Bingfei. Visual contrast enhancement algorithm based on histogram equalization[J]. Sensors, 2015, 15(7): 16-19.
[9] [9] Kento M, Hirotsugu O. FPGA implementation of an algorithm that enables color constancy[C]// Inter. Symp. on System Integration, 2020: 991-995.
[10] [10] Huang C, Zhang Q, Wang H, et al. A low power and low complexity automatic white balance algorithm for amoled driving using histogram matching[J]. J. of Display Technology, 2017, 11(1): 53-59.
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GE Runlin, LIN Shanling, LIN Zhixian, GUO Tailiang. Design and Implementation of FPGA-Based Image Adaptive AWB System[J]. Semiconductor Optoelectronics, 2022, 43(2): 377
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Received: Nov. 26, 2021
Accepted: --
Published Online: Jul. 21, 2022
The Author Email: Zhixian LIN (lzx2005000@163.com)