By Leszek J. Chmielewski, Ryszard Kozera, Bok-Suk Shin, Konrad Wojciechowski
This ebook constitutes the refereed complaints of the foreign convention on laptop imaginative and prescient and photos, ICCVG 2014, held in Warsaw, Poland, in September 2014. The eighty one complete papers provided have been conscientiously reviewed and chosen from a variety of submissions. They conceal a variety of very important facets of laptop imaginative and prescient and graphics.
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Extra info for Computer Vision and Graphics: International Conference, ICCVG 2014, Warsaw, Poland, September 15-17, 2014. Proceedings
5 (n·(n − 1)) for n conditions. The number of trials can be Time Compensation in Perceptual Experiments 35 Fig. 2. The reference images (scenes) from the public domain Kodak Photo CD used in the experiments limited using balanced incomplete block designs  in which all possible paired comparisons are indirectly inferred. But even more eﬀective reduction of trials can be achieved if a sorting algorithm is used to choose pairs to compare . Eﬃcient sorting algorithms, such as quicksort, can reduce the number of comparisons necessary to order a set of conditions to about n log n, which could be signiﬁcantly less than the full comparison, especially if the number of conditions n is large.
2. Examples of Julia-like rendering of polynomiographs In the last example (Fig. 3) we show examples of using diﬀerent convergence tests in the Mandelbrot- and Julia-like rendering algorithms. To see the diﬀerence between standard and non-standard convergence tests we used the same parameters as in Figs. 08 (zi+1 − zi )| < ε, where (z), (z) denote the real and imaginary part of z (respectively). (a) (b) (c) (d) Fig. 3. Examples of Mandelbrot- and Julia-like rendering of polynomiographs with diﬀerent convergence tests 5 Conclusions In this paper, we presented two algorithms for the rendering of polynomiographs that are based on the ideas used in the rendering of the well known Mandelbrot and Julia sets.
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