Lu Weitao, Tao Shanchang, Tan Yongbo. Error analyses of daytime meteorological visibility measurement using dual differential luminance algorithm. J Appl Meteor Sci, 2005, 16(5): 619-628.
Citation: Lu Weitao, Tao Shanchang, Tan Yongbo. Error analyses of daytime meteorological visibility measurement using dual differential luminance algorithm. J Appl Meteor Sci, 2005, 16(5): 619-628.

ERROR ANALYSES OF DAYTIME METEOROLOGICAL VISIBILITY MEASUREMENT USING DUAL DIFFERENTIAL LUMINANCE ALGORITHM

  • Received Date: 2005-04-14
  • Rev Recd Date: 2005-08-11
  • Publish Date: 2005-10-31
  • The theoretical analyses of measurement error caused by non-standard viewing conditions, and the corresponding error-control methods through using a Dual Differential Luminance (DDL)algorithm in daytime meteorological visibility measurements are presented based on digital photography.It show s that :(i)the vertical relative gradients of sky luminance near due south and north horizons are mostly in the range of 4%/°~10%/°bigger than horizontal ones, which are mostly less than 2%/°, except at noon in sunny day or w hen the homogeneous cloud layer spreads over the w hole sky.The deviation angles between sight paths of different target-backg rounds can bring much bigger measurement errors and their effects should no t be neglected.The best solution is to set targets with same viewing elevation angle and to restrict the viewing azimuth angle deviations as small as possible during the operations of Digital Photography Visiometer System (DPVS).With the important advantage of matrix imaging technique, there is the possibility to further reduce their effects if the sky luminance along the same sight path of a given target is interpolated from the luminance distribution of the sky at both sides of the target.(ii)The nonuniform illumination along the sight path is also a measurement error source, which can' t be cont rolled manually.It is preferred to choose a site field with more uniform surface.And the error can also be reduced to a certain ex tent through averaging multi-samples.It is feasible to avoid result s with muchbigger error by monitoring the luminance distributions of site and sky and recognizing worse illumination conditions in real time.(iii)Observing some dark target s, such as trees, grasses, mountains, w alls and window s etc., can' t satisfy the demand of DDL measurements.I t is an optimal solution to adopt artificial black target s which have enough low reflectivity.
  • [1]
    Doerfel S.Apparatus and Method for Monitoring and Reporting Weather Conditions.United States Patent, 2001, No. US 6208938 B1.
    [2]
    Middleton W E K.Vision Th rough the Atmosphere.Toronto :University of Toronto Press, 1952.60~82.
    [3]
    Legal T, Legal L, Lehn W.Measuring Visibility Using Digit al Remote Video Cameras.The 9th Symposium on Meteorological Observations and Instrumentation.American Meteorological Society, 1994.87~89.
    [4]
    Xie Xingsheng, Tao S hanchang, Zhou Xiuji.Measuring visibility using digital photography.Chinese Science Bulletin,199944(12):1130~1134. doi:  10.1007/BF02886142
    [5]
    Gazzi M, Vicentini V, Bonafé U.A field experiment on contrast reduction law.Atmos Environ,199428(5):901~907. doi:  10.1016/1352-2310(94)90248-8
    [6]
    吕伟涛, 陶善昌, 刘亦风, 等.基于数字摄像技术测量气象能见度———双亮度差方法和试验研究.大气科学,200428(4):559~570. http://www.cnki.com.cn/Article/CJFDTOTAL-DQXK200404007.htm
    [7]
    VAISALA.Visibili ty Met er FD12 User' s Guide.1997.8~9.
    [8]
    曾书儿, 王改利.能见度的观测及其仪器.应用气象学报,199910(2):207~212. http://qikan.camscma.cn/jams/ch/reader/view_abstract.aspx?file_no=19990259&flag=1
    [9]
    Allard D, Tombach I.The effects of non-standard condition on visibility measurement.Atmos Environ,198115(10/ 11):1847~1857.
    [10]
    Horvath H.Atmospheric visibility.Atmos Environ,198115(10/ 11):1785~1796.
    [11]
    Malm W, Pitchford M, Pitchford A.Sit e specific factors influencing the visual range calculated from teleradiom eter measurement s.Atmos Environ,198216(10):2323~2333. doi:  10.1016/0004-6981(82)90118-4
    [12]
    Gorraiz J, Horvath H.Influence of nonuniform ground reflectance on horizontal visibility.Appl Opt,198322(23): 3684~3689. doi:  10.1364/AO.22.003684
    [13]
    毛节泰, 李建国.气象能见度与望远光度计.大气科学,19848(2):170~177. http://www.cnki.com.cn/Article/CJFDTOTAL-DQXK198402006.htm
    [14]
    吕伟涛, 陶善昌.CC D数字摄像系统光学特性的一种标定方法.光学技术,200127(2):109~112. http://d.wanfangdata.com.cn/Periodical/gxjs200102018
    [15]
    周秀骥, 陶善昌, 姚克亚.高等大气物理学.北京:气象出版社, 1991.901~907.
    [16]
    Ricchiazzi P, Yang S, Gautier C, et al.SBDART :A research and teaching software tool for plane-parallel radiative transfer in the earth' s atmosphere.Bull Amer Meteoro Soc,199879(10):2101~2114. doi:  10.1175/1520-0477(1998)079<2101:SARATS>.0.CO;2
    [17]
    王松皋, 胡筱欣, 王维和, 等译.Elachi C.遥感的物理学和技术概论.北京:气象出版社, 1995.49~56.
    [18]
    吕伟涛, 陶善昌, 谭涌波, 等.数字摄像能见度观测系统中实用黑体技术的应用.应用气象学报,200314(6):691~699. http://qikan.camscma.cn/jams/ch/reader/view_abstract.aspx?file_no=20030687&flag=1
  • 加载中
  • -->

Catalog

    Figures(4)

    Article views (3361) PDF downloads(1852) Cited by()
    • Received : 2005-04-14
    • Accepted : 2005-08-11
    • Published : 2005-10-31

    /

    DownLoad:  Full-Size Img  PowerPoint