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Morovic, J.
Derby Univ. (United Kingdom)1998
Derby Univ. (United Kingdom)1998
AbstractAbstract
[en] When a colour image from one colour reproduction medium (e.g. nature, a monitor) needs to be reproduced on another (e.g. on a monitor or in print) and these media have different colour ranges (gamuts), it is necessary to have a method for mapping between them. If such a gamut mapping algorithm can be used under a wide range of conditions, it can also be incorporated in an automated colour reproduction system and considered to be in some sense universal. In terms of preliminary work, a colour reproduction system was implemented, for which a new printer characterisation model (including grey-scale correction) was developed. Methods were also developed for calculating gamut boundary descriptors and for calculating gamut boundaries along given lines from them. The gamut mapping solution proposed in this thesis is a gamut compression algorithm developed with the aim of being accurate and universally applicable. It was arrived at by way of an evolutionary gamut mapping development strategy for the purposes of which five test images were reproduced between a CRT and printed media obtained using an inkjet printer. Initially, a number of previously published algorithms were chosen and psychophysically evaluated whereby an important characteristic of this evaluation was that it also considered the performance of algorithms for individual colour regions within the test images used. New algorithms were then developed on their basis, subsequently evaluated and this process was repeated once more. In this series of experiments the new GCUSP algorithm, which consists of a chroma-dependent lightness compression followed by a compression towards the lightness of the reproduction cusp on the lightness axis, gave the most accurate and stable performance overall. The results of these experiments were also useful for improving the understanding of some gamut mapping factors - in particular gamut difference. In addition to looking at accuracy, the pleasantness of reproductions obtained using various algorithms was also looked at and a strong and positive correlation was found between these two properties. It was also shown that the reproductions made with GCUSP were pleasant in isolation. which makes it a very good candidate for a standard universal gamut mapping algorithm. (author)
Primary Subject
Source
Oct 1998; 292 p; Available from British Library Document Supply Centre- DSC:DX206639; Thesis (Ph.D.)
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Miscellaneous
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Thesis/Dissertation
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AbstractAbstract
[en] Published in summary form only
Original Title
Subrotina Grafg
Primary Subject
Source
Instituto de Engenharia Nuclear (IEN), Rio de Janeiro, RJ (Brazil); 279 p; 1984; p. 28
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Miscellaneous
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Tani, Keiji; Osame, Toshiki; Kihara, Kazuhisa.
Japan Atomic Energy Research Inst., Tokyo1984
Japan Atomic Energy Research Inst., Tokyo1984
AbstractAbstract
[en] As an application of computer graphics, we have developed a code named as ''CATS'' which stands for computer aided tracing system. With CATS, many kinds of graphs and tables can be fed into the host computer as graphic data by a digitizing tablet. After editing figures on the graphic display terminal, one can obtain color pictures by hard copy unit or fair monocromatic copies by a laser printer through host computer. We employ an interactive graphical input in Japanese, so that users of ''CATS'' can easily edit figures without any knowledge on the complicated FORTRAN utility package for graphic display. The usage of ''CATS'' is summarized in this report. (author)
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Source
May 1984; 64 p
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Report
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AbstractAbstract
[en] Computer graphics methods and tools are being used to a great extent in scientific research. The future development in this area will be influenced both by new hardware developments and by software advances. On the hardware sector, the development of the raster technology will lead to the increased use of colour workstations with more local processing power. Colour hardcopy devices for creating plots, slides, or movies will be available at a lower price than today. The first real 3D-workstations appear on the marketplace. One of the main activities on the software sector is the standardization of computer graphics systems, graphical files, and device interfaces. This will lead to more portable graphical application programs and to a common base for computer graphics education. (orig.)
Primary Subject
Source
European Organization for Nuclear Research, Geneva (Switzerland); 266 p; 23 Nov 1982; p. 147-163; Workshop on software in high-energy physics; Geneva (Switzerland); 4 - 6 Oct 1982
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Report
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Conference
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Balashov, V.K.
Joint Inst. for Nuclear Research, Dubna (USSR). Lab. of Computing Techniques and Automation1991
Joint Inst. for Nuclear Research, Dubna (USSR). Lab. of Computing Techniques and Automation1991
AbstractAbstract
[en] The structure of the software for computer graphics at VAX JINR is described. It consists of graphical packages GKS, WAND and a set graphicals packages for High Energy Physics application designed at CERN. 17 refs.; 1 tab
Original Title
Mashinnaya grafika na VAX EhVM OIYaI
Primary Subject
Source
1991; 11 p
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Report
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Cowan, R.F.
Stanford Linear Accelerator Center, Menlo Park, CA (USA)1990
Stanford Linear Accelerator Center, Menlo Park, CA (USA)1990
AbstractAbstract
[en] The EGS4 Code System has been coupled with the SLAC Unified Graphics System in such a manner as to provide a means for displaying showers on UGS77-supported devices. This is most easily accomplished by attaching an auxiliary subprogram package (SHOWGRAF) to existing EGS4 User Codes and making use of a graphics display or a post-processor code called EGS4PL. SHOWGRAF may be used to create shower displays directly on interactive IBM 5080 color display devices, supporting three-dimensional rotations, translations, and zoom features, and providing illustration of particle types and energies by color and/or intensity. Alternatively, SHOWGRAF may be used to record a two-dimensional projection of the shower in a device-independent graphics file. The EGS4PL post-processor may then be used to convert this file into device-dependent graphics code for any UGS77-supported device. Options exist within EGS4PL that allow for two-dimensional translations and zoom, for creating line structure to indicate particle types and energies, and for optional display of particles by type. All of this is facilitated by means of the command processor EGS4PL EXEC together with new options (5080 and PDEV) with the standard EGS4IN EXEC routine for running EGS4 interactively under VM/SP. 6 refs
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Source
16 Aug 1990; 57 p; CONTRACT AC03-76SF00515; NTIS, PC A04/MF A01 as DE90017027; OSTI; INIS; US Govt. Printing Office Dep
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Report
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Gusarova, M.A.; Kutsaev, S.V.; Bolgov, R.O.; Isaev, I.V.; Sobenin, N.P.
Scientific session NRNU MEPHI-2010. XIII International Telecommunication Conference of students and young scientists Young people and science. Book of abstracts. In three parts. Part 12010
Scientific session NRNU MEPHI-2010. XIII International Telecommunication Conference of students and young scientists Young people and science. Book of abstracts. In three parts. Part 12010
AbstractAbstract
No abstract available
Original Title
Razrabotka programmy trekhmernogo modelirovaniya mul'tipaktornogo razryada v SVCh-ustrojstvakh uskoritelej zaryazhennykh chastits
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Secondary Subject
Source
Ministerstvo Obrazovaniya i Nauki Rossijskoj Federatsii, Moscow (Russian Federation); Federal'noe Agentstvo po Obrazovaniyu, Moscow (Russian Federation); Gosudarstvennaya Korporatsiya po Atomnoj Ehnergii Rosatom, Moscow (Russian Federation); Natsional'nyj Issledovatel'skij Yadernyj Univ. MIFI, Moscow (Russian Federation); 200 p; ISBN 978-5-7262-1229-6; ; 2010; p. 122-123; NRNU MEPHI-2010: 13. International Telecommunication Conference of students and young scientists Young people and science; Nauchnaya sessiya NIYaU MIFI-2010. XIII Mezhdunarodnaya telekommunikatsionnaya konferentsiya studentov i molodykh uchenykh Molodezh' i nauka; Moscow (Russian Federation); Nov-Dec 2009; 3 refs., 2 figs.
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Book
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Conference
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AbstractAbstract
[en] A comparative analysis has been made to describe the potentialities of hardware and software tools of two most widely used modern architectures of graphic processors (AMD and NVIDIA). Special features and differences of GPU architectures are exemplified by fragments of GPGPU programs. Time consumption for the program development has been estimated. Some pieces of advice are given as to the optimum choice of the GPU type for speeding up the processing of scientific research results. Recommendations are formulated for the use of software tools that reduce the time of GPGPU application programming for the given types of graphic processors
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Journal Article
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Voprosy Atomnoj Nauki i Tekhniki; ISSN 1562-6016; ; (no.3-97/64); p. 148-153
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AbstractAbstract
[en] The opportunities of technology CUDA (Compute Unified Device Architecture - the unified hardware-software decision for parallel calculations on GPU)of the company NVIDIA were described. The basic differences of the programming language 'C' for GPU from 'usual' language 'C' were selected. The examples of CUDA usage for acceleration of development of applications and realization of algorithms of scientific and technical calculations were given which are carried out by the means of graphic processors (GPGPU) of accelerators GeForce of the eighth generation. The recommendations on optimization of the programs using GPU were resulted.
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Journal Article
Journal
Voprosy Atomnoj Nauki i Tekhniki; ISSN 1562-6016; ; (no.5/63); p. 159-165
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AbstractAbstract
[en] Short note
Original Title
Ispol'zovanie tekhniki EhVM dlya analiza rentgenovskikh izobrazhenij
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Source
Tsentral'nyj Nauchno-Issledovatel'skij Rentgeno-Radiologicheskij Inst., Leningrad (USSR); 308 p; 1988; p. 44-45; All-union conference on actual problems of experimental and clinical roentgenoradiology; Leningrad (USSR); 12-13 Nov 1988
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Miscellaneous
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Conference
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