• Applied optics · Jan 2007

    Optimized algorithm for the spatial nonuniformity correction of an imaging system based on a charge-coupled device color camera.

    • Marta de Lasarte, Jaume Pujol, Montserrat Arjona, and Meritxell Vilaseca.
    • Centre for Sencors, Instruments and Systems Development (CD6), Department of Optics and Optometry, Technical University of Catalonia, Terrassa, Spain. marta.lasarte@oo.upc.edu
    • Appl Opt. 2007 Jan 10;46(2):167-74.

    AbstractWe present an optimized linear algorithm for the spatial nonuniformity correction of a CCD color camera's imaging system and the experimental methodology developed for its implementation. We assess the influence of the algorithm's variables on the quality of the correction, that is, the dark image, the base correction image, and the reference level, and the range of application of the correction using a uniform radiance field provided by an integrator cube. The best spatial nonuniformity correction is achieved by having a nonzero dark image, by using an image with a mean digital level placed in the linear response range of the camera as the base correction image and taking the mean digital level of the image as the reference digital level. The response of the CCD color camera's imaging system to the uniform radiance field shows a high level of spatial uniformity after the optimized algorithm has been applied, which also allows us to achieve a high-quality spatial nonuniformity correction of captured images under different exposure conditions.

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