The paper presents a method of adaptive processing and compression of color spot images of laser beams. The method was elaborated as the result of analysis of the present state of art and implemented as a form of computer program.
The paper deals with a problem of insufficient productivity of existing computer means for large image processing, which do not meet modern requirements posed by resource-intensive computing tasks of laser beam profiling. The research concentrated on one of the profiling problems, namely, real-time processing of spot images of the laser beam profile. Development of a theory of parallel-hierarchic transformation allowed to produce models for high-performance parallel-hierarchical processes, as well as algorithms and software for their implementation based on the GPU-oriented architecture using GPGPU technologies. The analyzed performance of suggested computerized tools for processing and classification of laser beam profile images allows to perform real-time processing of dynamic images of various sizes.
Authors have worked out a nonstationary signal analysis method on the example of research of laser lines. This method disclosed relationship between signal approximation coefficients and geometry signal characterizations(for instance, energy center, moment of inertia). The example, which is demonstrating an application of this method for exact coordinate determination problem in laser line at displacement compensation in laser imaging are present. Various extrapolation approaches of laser beam location in real time are considered.
Authors have worked out a nonstationary signal analysis method on an example of research laser lines. This method disclosed relationship between signal approximation coefficients and geometry signal characterizations (for instance, energy center, moment of inertia). An example, which is demonstrating an application of this method for exact coordinate determination problem in laser line at displacement compensation in laser imaging are present.
The given work is devoted to the analysis of problems connected to a substantiation of an internal nature of light and consideration it as of objective limiting unit of the information. In work are considered a number of theoretical questions and problems of applied character, which concern the analysis of the basic ideas of the scientific concept both characteristic of a modern status and prospects of development of information systems on base optoelectronic information- power technologies.
Theoretical substantiation of creation expediency and efficiency of optical-electronical multi-functional operating screen for timer bio-processors was made in this work. It is also represented in this work. The substantiation of models and elaborated formal apparatus for synthesis of hardware facilities based on quantron-automatum machines.
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