LI Xinnia. Improved non-local means filtering algorithm for video monitoring image of coal mine[J]. Journal of Mine Automation, 2015, 41(6): 66-70. DOI: 10.13272/j.issn.1671-251x.2015.06.016
Citation: LI Xinnia. Improved non-local means filtering algorithm for video monitoring image of coal mine[J]. Journal of Mine Automation, 2015, 41(6): 66-70. DOI: 10.13272/j.issn.1671-251x.2015.06.016

Improved non-local means filtering algorithm for video monitoring image of coal mine

More Information
  • For unclear underground video monitoring image caused by poor light and a lot of dust, an improved non-local means filtering algorithm was proposed. Firstly, video monitoring images are processed by Log edge extraction operator, so as to extract edge information of the images, and edge images and non-edge images are obtained. Then, non-local means filtering algorithm is improved from the perspective of extraction method of similar image blocks and weighting calculation method, and the improved algorithm is adopted to filter noise in the non-edge images. Finally, the edge images and the filtered non-edge images are fused. Median filtering algorithm, average filtering algorithm, non-local means filtering algorithm and the improved algorithm were used to deal with field images. The test results indicate that the improved algorithm has better image processing effect than the other algorithms.
  • Related Articles

    [1]LI Zaiyou, SUN Yanbin, WANG Xiaoguang, CHEN Yong, LIU Guangwei, GUO Zhiqing. Unmanned truck transportation scheduling in open-pit mines based on improved tunicate swarm algorithm[J]. Journal of Mine Automation, 2022, 48(6): 87-94, 127. DOI: 10.13272/j.issn.1671-251x.17929
    [2]HAN Tao, LI Jing, HUANG Yourui, XU Shanyong, XU Jiachang. Research on trajectory planning algorithm of manipulator arm of coal mine rescue robot[J]. Journal of Mine Automation, 2021, 47(11): 45-52. DOI: 10.13272/j.issn.1671-251x.17844
    [3]MEN Fei, JIANG Xi. Improved gray wolf optimization algorithm for solving low-carbon transportation scheduling problem in open-pit mines[J]. Journal of Mine Automation, 2020, 46(12): 90-94. DOI: 10.13272/j.issn.1671-251x.2020070049
    [4]PENG Cheng, SUI Xiaomei, WANG Huiju. Improved differential evolution algorithm for solving open-pit mine transportation problem[J]. Journal of Mine Automation, 2018, 44(4): 104-108. DOI: 10.13272/j.issn.1671-251x.2017100044
    [5]WANG Anyi, XI Xi. Forecasting of underground field intensity based on LS-SVM optimized by genetic algorithm[J]. Journal of Mine Automation, 2016, 42(12): 46-50. DOI: 10.13272/j.issn.1671-251x.2016.12.010
    [6]SONG Pinggang, JIANG Lang, LI Yunfeng, DUAN Chengting. Research of optimized sorting algorithm of capacitor voltage for MMC[J]. Journal of Mine Automation, 2014, 40(6): 64-67. DOI: 10.13272/j.issn.1671-251x.2014.06.016
    [7]LV Ting-ting, MA Xiao-ping, CHEN Li. Simulation of PID control of jig discharging system optimized by genetic algorithm[J]. Journal of Mine Automation, 2013, 39(1): 67-70.
    [8]AN Feng-shua, . Optimization of PID Controller Parameters Based on Modified Particle Swarm Optimization Algorithm[J]. Journal of Mine Automation, 2010, 36(5): 54-57.
    [9]NIE Xing-xin~, LIU Shu-xiang~. Application of Genetic Algorithm in Optimization of Vehicle Dispatching System of Jinduicheng Molybdenum Mine[J]. Journal of Mine Automation, 2008, 34(2): 12-15.
    [10]MA Yan-nan, CHENG Qian-li. A Reactive Power Optimization Planning of Power System Based on Genetic Algorithm[J]. Journal of Mine Automation, 2007, 33(4): 33-35.
  • Cited by

    Periodical cited type(0)

    Other cited types(4)

Catalog

    Article Metrics

    Article views (39) PDF downloads (6) Cited by(4)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return