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- W2181700218 abstract "The article considers the advantages and disadvantages of using the method of rational functions as to the transformation of the physical models of space scanner system cameras of high and super high-resolution into the coordinate Rational Polynomial Coefficients (RPC) models of images. The advantages of the coordinate RPC models include simplicity, the autonomy from the on-board and ground based cue provided by instruments, high speed of operation, high precision and the lack of necessity in transferring commercially relevant information about the structural characteristics of the camera and shooting modes to the consumers of images. It must be noted that from the listed physical models' advantages there remains only higher precision, although some researchers indicate a much higher level of precision. Among the main disadvantages of RPC models one could name their posteriori character and the need to perform a large volume of photogrammetric operations for the calculation of Rational Polynomial Coefficients after the receiving of shooting materials for processing. The proposed method is based upon the use of rational functions for approximating not the results of physical models application but the analytical relations themselves, describing these models. Unlike cumbersome coordinate algebraic polynomials of full third power with seventy-eight coefficients and object-camera calculation scheme, we suggest using coordinate-time polynomials not higher than in the second power with the number of coefficients no more than thirty and the model calculation scheme camera-ellipsoid." @default.
- W2181700218 created "2016-06-24" @default.
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- W2181700218 date "2013-01-01" @default.
- W2181700218 modified "2023-09-27" @default.
- W2181700218 title "Approximation of Physical Models of Space Scanner Systems" @default.
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