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References
|
|
|
1. |
M. N. Burdaev, V. M. Khachumov, “Use of Methods of Cognitive Graphics in the Astronauts' Training Process”, Materialy XXXII obshhestvenno-nauchnyh chtenij, posvjashhennyh pamjati Ju.A.Gagarina (Gagarinskij sbornik) (Gagarin, March 9–12, 2005), 2005, 218–225 (in Russian) |
2. |
A. A. Zenkin, Cognitive Computer Graphics, Nauka, M., 1991, 192 pp. (in Russian) |
3. |
D. A. Pospelov, “Cognitive Graphics — a Window Into a New World”, Programmnye Produkty i Sistemy (Software & Systems), 1992, no. 2, 4–6 (in Russian) |
4. |
A. N. Anohin, A. S. Ivkin, “Visual Support of Cognitive Activity of the Operator”, Trinadcataja Nacionalnaja konferencija po iskusstvennomu intellektu s mezhdunarodnym uchastiem, KII 2012, Trudy konferencii (Belgorod, October 16–20, 2012), v. 1, 2012, 343–350 (in Russian) |
5. |
N. Marmaras, S. Drivalou, Design and evaluation of ecological interfaces, THALES basic research program. Project results demonstration, https://www.ntua.gr/eseve/Vasikh_Ereyna/Thalis/Thalis_projects_English_summaries/Marmaras.pdf, 2005, 6 pp. |
6. |
V. A. Bijsterbosch, C. Borst, M. Mulder, M. M. van Paassen, “Ecological interface design: sensor failure diagnosis in air traffic control”, IFAC-PapersOnLine, 49:19 (2016), 307–312 |
7. |
Sang Ho Kim, Jose Fernando Sabando, Woo Hyun Kim, “An ecological interface design approach for developing integrated and advanced in-vehicle information system”, Indian Journal of Science and Technology, 9:16 (2016), 18 pp. |
8. |
I. Yakubu, “Development of a flight collision avoidance system for a free flight environment: an ecological interface design approach”, International Journal of Multidisciplinary and Current Research, 2013, Nov.-Dec., 120–133 https://pdfs.semanticscholar.org/6be4/56456689052dcd5ff8802ed3721b926a09a1.pdf |
9. |
L. V. Massel, A. G. Massel, R. A. Ivanov, “Cognitive Graphics and Semantic Modeling for Geospatial Solutions in the Energy Sector” (Krasnodar, November 11–20, 2015), Ustojchivoe razvitie territorij: kartografo-geoinformacionnoe obespechenie, 21, Materialy Mezhdunarodnoj konferencii ‘`InterKarto/InterGIS’ (2015), 496–503 (in Russian) |
10. |
Yu. S. Kashnitsky, “Visual Analytics in the Problem of Triclasterization of Multidimensional Data”, Trudy Moskovskogo Fiziko-Tehnicheskogo Instituta, 2014, no. 3, 43–56 (in Russian) |
11. |
F. Fischer, Visual analytics for situational awareness in cyber security, Doctoral Dissertation, Germany, 2016, 220 pp. https://kops.uni-konstanz.de/bitstream/handle/123456789/36392/Fischer_0-378085.pdf |
12. |
T. Höllt, Visual workflows for oil and gas exploration, Ph.D. Thesis, Kingdom of Saudi Arabia, 2013, 153 pp. https://www.researchgate.net/publication/256668699_Visual_Workflows_for_Oil_and_Gas_Exploration |
13. |
C. Zhang, M. Caan, T. Höllt, E. Eisemann, A. Vilanova, “Overview + detail visualization for ensembles of diffusion tensors”, Materials of the Eurographics Conference on Visualization (EuroVis) (Spain, June 12–16, 2017), 2017, 12 pp. http://graphics.tudelft.nl/Publications-new/2017/ZCHEV17/EuroVis2017_FinalVersion.pdf |
14. |
H. Janetzko, F.Stoffel, S. Mittelstädt, D. A. Keim, “Anomaly detection for visual analytics of power consumption data”, Computers & Graphics, 38 (2014), 27–37 |
15. |
GOST 26387–84. The System “Person-Machine”. Terms and Definitions, Izdatelstvo standartov, M., 1986, 5 pp. (in Russian) |
16. |
S. F. Sergeev, Introduction to Engineering Psychology and Ergonomics of Immersive Environments. Tutorial, Izd-vo SPbGU ITMO, St. Petersburg, 2011, 258 pp. (in Russian) |
17. |
V. P. Savinyh, “Information Models by Remote Sensing of Eath”, Educational Resources and Technologies, 2016, no. 1, 109–121 (in Russian) |
18. |
V. T. Matchin, “The Information Model in Man-Machine System”, Perspectives of Science and Education, 2014, no. 6, 14–18 (in Russian) |
19. |
M. K. Tutushkina, Psychological Bases of Encoding Visual Information for Human-Operator, Avtoreferat dissertacii na soiskanie uchenoj stepeni doktora pedagogicheskih nauk, L., 1982, 33 pp. (in Russian) |
20. |
L. N. Gorjunova, Operator Activity in Human Systems: Tutorial, SPbGU, St. Petersburg, 2006, 68 pp. (in Russian) |
21. |
I. A. Kochetkova, Methods and Algorithms of Information Processing and Decision Making About Cardiovascular Pathology on the Basis of Visualization Mechanisms and the Theory of Fuzzy Sets, Avtoreferat dissertacii na soiskanie uchenoj stepeni kandidata tehnicheskih nauk, Kursk, 2014, 18 pp. (in Russian) |
22. |
V. L. Gorohov, “Cognitive Capabilities of Computer Technology for Monitoring Hazards and Health and Safety in Construction and Other Industries”, Scientific Journal of NIITMO. Series “Economics and Environmental Management”, 2013, no. 1, 8 pp. (in Russian) |
23. |
A. Yu. Zinoviev, Visualization of Multidimensional Data, Izdatelstvo Krasnojarskogo gosudarstvennogo tehnicheskogo universiteta, Krasnoyarsk, 2000, 180 pp. (in Russian) |
24. |
A. E. Yankovskaya, A. V. Yamshanov, “Intelligent Learning-Testing Systems Using Cognitive Technologies”, XII Vserossijskoe soveshhanie po problemam upravlenija VSPU-2014: Trudy (Moscow, 16–19 June, 2014), 2014, 4183–4191 (in Russian) |
25. |
A. V. Yamshanov, Parallel Computing Models and Methods for Building Fault-Tolerant Diagnostic Tests in Intelligent Systems With a Cognitive Component, Dissertacija na soiskanie uchenoj stepeni kandidata tehnicheskih nauk, Tomsk, 2017, 167 pp. (in Russian) |
26. |
O. G. Lazutin, “Technique of Communicating Information About the Technical State of Space Vehicles Using Data Compression Algorithms and Cognitive Graphical Representation”, Trudy Voenno-kosmicheskoj akademii imeni A.F. Mozhajskogo, 650 (2016), 11–17 (in Russian) |
27. |
P. S. Alexandrov, Combinatorial Topology, GITTL, M., 1947, 672 pp. (in Russian) |
28. |
Graphical Methods of Data Analysis, Statsoft. Electronic Textbook on Statistics, http://statsoft.ru/home/textbook/modules/stgraph.html (in Russian) |
29. |
A. A. Bashlykov, Computer Information Systems for Intellectual Support of Operators of Nuclear Power Plants, OAO “VNIIOJeNG”, M., 2016, 520 pp. (in Russian) |
30. |
H. Chernoff, “The use of faces to represent points in k-dimensional space graphically”, Journal of the American Statistical Association, 68:342 (1973), 361–368 |
31. |
I. A. Osadchaja, O. G. Berestneva, E. V. Nemerov, “Analysis of Multidimensional Medical Data Using Pictographics “Chernoff Faces””, Bulletin of Siberian Medicine, 2014, no. 4, 89–93 (in Russian) |
32. |
B. G. Grishin, An Imaginative Analysis of Experimental Data, Nauka, M., 1982, 237 pp. (in Russian) |
33. |
Ju. G. Emelaynova, N. E. Teploukhova, “The Modeling and Cognitive-Graphic Representation of Radio Engineering Signals in Exploiting Personnel Teaching System”, Aerospace Instrument-Making, 2011, no. 9, 21–30 (in Russian) |
34. |
D. F. Andrews, “Plots of High-Dimensional Data”, International Biometric Society, 18:1 (1972), 125–136 |
35. |
S. V. Groshev, N. V. Pivovarova, “Using the Andrews Plotss to Visualize Multidimensional Data in Multi-Criteria Optimization”, Scientific Edition of Bauman MSTU. Science & Education, 2015, no. 12, 197–214 (in Russian) |
36. |
E. Kleiberg, H. van de Wetering, J. J. van Wijk, “Botanical visualization of huge hierarchies”, Proceedings of the Symposium on Information Visualization, InfoViz’01 (USA, October 22–23, 2001), 2001, 87–94 |
37. |
F. Beck, M. Burch, T. Munz, L. Silvestro, D. Weiskopf, “Generalized pythagoras trees for visualizing hierarchies”, Proceedings of the 5th International Conference on Information Visualization Theory and Applications (Portugal, January 5–8, 2014), v. 1, 2014, 17–28 |
38. |
Ju. V. Novoselov, Methods and Software for Cognitive Graphics for Intelligent Decision Support Systems, Avtoreferat dissertacii na soiskanie uchenoj stepeni kandidata tehnicheskih nauk, M., 2013, 20 pp. (in Russian) |
39. |
S. A. Tihomirov, Algorithms for the Analysis of Telemetric Information and Decision Support in the Systems for Testing Space Rockets-Carriers, Avtoreferat dissertacii na soiskanie uchenoj stepeni kandidata tehnicheskih nauk, Ryazan, 2014, 20 pp. (in Russian) |
40. |
M. M. Matjushin, H. V. Sarkisjan, “Construction of an Evaluation Function to Support the Adoption of Operational Decisions when Monitoring the Parameters of the State of the Spacecraft”, Scientific Edition of Bauman MSTU. Science & Education, 2011, no. 4, 15 pp. (in Russian) |
41. |
A. N. Anohin, A. S. Ivkin, “Visual Support of Cognitive Activity of the Operator”, Trinadcataja Nacionalnaja konferencija po iskusstvennomu intellektu s mezhdunarodnym uchastiem KII 2012, Trudy konferencii (Belgorod, 16–20 October 2012), v. 1, 2012, 343–350 (in Russian) |
42. |
A. A. Bashlykov, Cognitive Graphics as a Means of Imaginative Representation of the State of Power Units of Nuclear Power Plants, 2014, 19 pp. http://transenergostroy.ru/publications/kognitivnye_obrazy_kak_sredstvo_obraznogo_predstavleniya_sostoyaniya_energoblokov_atomnyh_elektrosta.html (in Russian) |
43. |
A. A. Bashlykov, “Cognitive Management as a New Paradigm for Creation of Intellectual Systems of Human-Machine Management of Complicated and Ecologically Dangerous Objects and Technologies”, Automation, Telemechanization and Communication in the Oil Industry, 2013, no. 2, 15–21 (in Russian) |
44. |
A. A. Bashlykov, ““The Line of the Hydrobias” as the Cognitive Image for the Organization of Director Control of the Main Oil Pipelines”, Automation, Telemechanization and Communication in the Oil Industry, 2015, no. 3, 4–11 (in Russian) |
45. |
M. Pinzger, H. Gall, M. Fischer, M. Lanza, “Visualizing multiple evolution metrics”, Proceedings of the 2005 ACM symposium on Software Visualization Visualization of the software development process (USA, May 14–15, 2005), 2005, 67–75 |
46. |
V. N. Vagin, A. P. Eremeev, “Basic Principles of Designing Intelligent Real-Time Decision Support Systems for Monitoring and Managing Complex Technical Objects”, Trudy Tretego rasshirennogo seminara “Ispolzovanie metodov iskusstvennogo intellekta i vysokoproizvoditelnyh vychislenij v ajerokosmicheskih issledovanijah” (Pereslavl-Zalessky, November 26–27, 2003), 2003, 79–97 (in Russian) |
47. |
H. Song, Chr. W. Muelder, Kwan-Liu Ma, “Crucial nodes centric visual monitoring and analysis of computer networks”, Proceedings of International Conference on Cyber Security (USA, December 14–16, 2012), 2012, 16–23 |
48. |
V. M. Khachumov, E. V. Ksenofontova, “Image Analysis and Diagnostics of Complex Processes”, Doklady 11-j Vserossijskoj konferencii “Matematicheskie metody raspoznavanija obrazov” (Pushchino, November 23–29, 2003), 2003, 201–204 (in Russian) |
49. |
Ju. G. Emelyanova, “Development of Cognitive Representation Methods for Real Time Dynamic Systems”, Artificial Intelligence and Decision Making, 2016, no. 3, 21–30 (in Russian) |
50. |
Ju. G. Emelyanova, “Graphical Analysis of Information in Space Systems”, Software & Systems, 2009, no. 2, 45–49 (in Russian) |
51. |
A. A. Bashlykov, “Principles of Creation of Some Cognitive Image Like “Kaleidoscope” for First-Line Intellectual Support of an On-Line Dispatcher of Oil Pipeline systems”, Automation, Telemechanization and Communication in the Oil Industry, 2015, no. 5, 9–16 (in Russian) |
52. |
M. N. Burdaev, “Hodographs and the Equation of Flight in a Central Gravitational Field”, Program Systems: Theory and Applications, 2012, no. 3, 77–90 (in Russian) |
53. |
S. A. Sakulin, Analysis of the State of Technological Processes on the Basis of Fuzzy Expertise, Dissertacija na soiskanie uchenoj stepeni kandidata tehnicheskih nauk, M., 2009, 169 pp. (in Russian) |
54. |
M. M. Putyato, Development of Methods and Algorithms for Intellectual Decision Support Based on Fuzzy Cognitive Maps, Avtoreferat dissertacii na soiskanie uchenoj stepeni kandidata tehnicheskih nauk, Krasnodar, 2011, 24 pp. (in Russian) |
55. |
N. A. Zhukova, Methods and Models of Operational Control of the State of Complex Dynamic Objects on the Basis of Measurement Information Using Data Mining Algorithms, Avtoreferat dissertacii na soiskanie uchenoj stepeni kandidata tehnicheskih nauk, St. Petersburg, 2008, 16 pp. (in Russian) |
56. |
E. V. Ferrejra Opaso, P. V. Tereljanskij, “The Representation of Cognitive Maps in Three-Dimensional Space”, XII Vserossijskoe soveshhanie po problemam upravlenija VSPU-2014 (Moscow, June 16–19, 2014), 2014, 6149–6154 (in Russian) |
57. |
E. V. Polunina, The Methodology of Developing and Creating Models of On-Board Computer Systems for Simulators of Manned Spacecraft, Dissertacija na soiskanie uchenoj stepeni doktora tehnicheskih nauk, Pereslavl-Zalessky, 2011, 175 pp. (in Russian) |
58. |
L. V. Massel, E. V. Pyatkova, “Application of Bayesian Belief Networks for the Intelligent Support of Energy Security Problem Researches”, Vestnik IrGTU, 2012, no. 2, 8–13 (in Russian) |
59. |
B. F. Lomov, Spravochnik po inzhenernoi psikhologii, Mashinostroenie, M., 1982, 368 pp. (in Russian) |