Transdisciplinary convergent approach - human factor
Abstract
Keywords
Full Text:
PDFReferences
Mygal, G., Mygal, V. The viability of dynamic systems in difficult conditions: cognitive aspects. 2020 IEEE 11th International Conference on Dependable Systems, Services and Technologies (DESSERT), 2020, pp. 224-229. DOI: 10.1109/DESSERT50317.2020.9125063.
Mygal, V., Mygal G. Problems of Digitized Information Flow Analysis: Cognitive Aspects. Information & Security: An International Journal, 2019, vol. 43, no. 2, pp. 134-144. DOI: 10.11610/isij.4312.
Stanton, N. Advances in Human Factors of Transportation. Proceedings of the AHFE 2019 International Conference on Human Factors in Transportation, July 24-28, 2019, Washington D.C., USA, Springer, vol. 964. 834 p. DOI: 10.1007/978-3-030-20503-4.
Reiman, A., Kaivo-oja, J., Parviainen E., Takala Esa-Pekka, Lauraeus, Th. Human factors and ergonomics in manufacturing in the industry 4.0 context – A scoping review. Technology in Society, 2021, vol. 65, article no. 101572. DOI: 10.1016/j.techsoc.2021.101572
AHFE 2022 - 13th International Conference on Applied Human Factors and Ergonomics. July 24-28, 2022 - Sheraton New York Times Square, USA. Avalible at: https://2022.ahfe.org/index.html. (accessed 10.08.2021)
Lee, J. D., Wickens, C. D., Liu, Y., Boyle, L. N. Designing for People: An introduction to human factors engineering. Charleston, SC, CreateSpace, 2017. 692 p.
Transdisciplinarity: stimulating synergies, integrating knowledge. International Symposium on Transdisciplinarity, UNESCO, Division of Philosophy and Ethics. Val-d'Oise, France, 1998, рp. 37-38.
Advancing Research in Science and Engineering. Investing in Early-Career Scientists and High-Risk, High-Reward Research. American academy of arts and sciences, Cambridge, Massachusetts, 2008. 55 p. ISBN: 0-87724-071-X.
Mokiy, M. S., Mokiy, V. S. Transdistsiplinarnost' v vysshem obrazovanii: ekspertnye otsenki, problemy i prakticheskie resheniya [Transdisciplinarity in Higher Education: Expert Assessments, Problems and Practical Solutions]. Sovremennye problemy nauki i obrazovaniya – Modern problems of science and education, 2014. 16 p. Availible at: https://ssrn.com/abstract=2550155. (accessed 12.05.2021).
Mygal, V. P., Mygal, G. V. Kohnityvni ta erhonomichni aspekty vzayemodiyi lyudyny z komp"yuterom [Cognitive and ergonomics aspects human interactions with a computer]. Radioelektronni i komp'uterni sistemi – Radioelectronic and computer systems, 2020, no. 1(93), pp. 90-102. DOI: 10.32620/reks.2020.1.09.
Scott, A., Scott, J. Basic nature. Blackwell Publishers, 1991. 192 p. ISBN 10: 0631173625.
Russel, J. S., Norvig S. Artificial Intelligence: a modern approach. Prentice Hall, New Jersey, 2003. 946 p. ISBN 0-13-103805-2.
Moore, G. W. K. No Exponential is Forever: But Forever Can Be Delayed! Computer Science, In Proc. International Solid-State Circuits Conference, 2003. 19 p.
Fedota, J., Parasuraman, R. Neuroergonomics and human error. Theoretical Issues in Ergonomics Science, 2010, vol. 11, iss. 5, pp. 402-421. DOI: 10.1080/14639220902853104.
Venda, V. F., Venda, Y. V. Dynamics in Ergonomics, Psychology, and Decisions: Introduction to Ergodynamics. Norwood, NJ, Ablex, 1999. 503 p.
Evans, D. J., Searles, D. J. and Mittag, E. Fluctuation theorem for Hamiltonian systems: Le Chatelier's principle. Phys. Rev., 2001, vol. 63, iss. 5. DOI: 10.1103/PhysRevE.63.051105.
Bak, P., Tang, C., Wiesenfeld, K. Self-organized criticality. Physical review. E, Statistical physics, plasmas, fluids, and related interdisciplinary topics (PHYS REV A), 1988, vol. 38, iss. 1, pp. 364-374. DOI: 10.1103/PhysRevA.38.364.
Mygal, V. P., Mygal, G. V. Convergent Approach to Identification of Transient States of a Dynamic System. Journal of Nano-Electron. Phys., 2020, vol. 12, iss. 6, article no. 06018. DOI: 10.21272/jnep.12(6).06018.
Haken, H. Synergetics as a bridge between the natural and social sciences. London, Evolution, Order and Complexity, 1996. 296 p.
Mygal, V., Mygal, G., Illiashenko, O. Intelligent Decision Support – Cognitive Aspects. Digital Transformation, Cyber Security and Resilience of Modern Societies. Cham, Springer, 2021, рp. 395–411. (Studies in Big Data; vol. 84). DOI: 10.1007/978-3-030-65722-2_25.
Miller, G. A. The Psychology of Communication. New York, Basic Books, 1967. 197 p. DOI: 10.1002/hrm.3930060308.
Mainzer, K. Thinking in Complexity: The Complex Dynamics of Matter, Mind, and Mankind. Springer-Verlag Berlin Heidelberg, 1994. 327 p. DOI: 10.1007/978-3-662-03014-1.
Vstovsky, G. V. Elementy informatsionnoi fiziki [Elements of information physics]. Moscow, Moscow State University, 2002. 260 p.
Edwards, A. W. F. Maximization principles in evolutionary biology. Philosophy of Biology. Elsevier B.V., 2007, pp. 335-347.
French, S. The Structure of the World: Metaphysics and Representation. Oxford University Press, 2014. 390 p. DOI: 10.1093/acprof:oso/9780199684847.001.0001.
Kadomtsev, B. B. Dynamics and information. Phys. Usp. 1994, vol. 37, iss. 5, рp. 425-499. DOI: 10.1070%2FPU1994v037n05ABEH000109.
Forrester, J. W. System dynamics - a personal view of the first fifty years. System Dynamics Review, 2007, vol. 23, iss. 2-3, pp. 345-358. DOI: 10.1002/sdr.382.
Schwaninger, M., Ríos, J. P. System dynamics and cybernetics: A synergetic pair. System Dynamics Review, 2008, vol. 24, no. 2, pp. 145-174. DOI: 10.1002/sdr.400.
Passino, K. М. Biomimicry for Optimization, Control, and Automation. Springer-Verlag London, 2005. 957 p. DOI: 10.1007/b138169.
Haken, G. Tainy prirody. Sinergetika: uchenie o vzaimodeistvii [Secrets of nature. Synergetics: the doctrine of interaction]. Izhevsk, In-t komp'yuter. issled., 2003. 350 p.
Roco, M. C., Bainbridge, W. S. Converging Technologies for Improving Human Performance: Nanotechnology, Biotechnology, Information Technology and Cognitive Science. Journal of Nanoparticle Research, 2002, vol. 4, iss. 4., pp. 281-295. DOI: 10.1023/A:1021152023349.
Gӧdеl, К. Die Vollständigkeit der Axiome des logischen Funktionenkalküls, Monatshefte für Mathematik und Physik, 1930, vol. 37, part 2. pp. 349-360. DOI: 10.1007/BF01696781.
Rigolot, Cyrille. Transdisciplinarity as a discipline and a way of being: complementarities and creative tensions, Humanities and Social Sciences Communications, vol. 7, Article No. 100. DOI: 10.1057/s41599-020-00598-5.
Bernstein, J. H. Transdisciplinarity: A Review of Its Origins, Development, and Current. Issues Journal of Research Practice, 2015, vol. 11, iss. 1, article R1. 20 p.
Packard, N., Crutchfield., J, Farmer, J., Shaw, R. Geometry from a time series. Phys. Rev. Lett., 1980, vol. 45, iss. 9, pp. 712-716. DOI: 10.1103/PhysRevLett.45.712.
Takens, F. Nonlinear dynamics and turbulence. N.Y, Pitman, 1983, pp. 314-333.
Mygal, V. P., Mygal, G. V. Cyber physical approach to study the functioning of dynamic systems. Electrical and computer systems, 2016, no. 22 (98), р. 354-358.
Katzav, J. Dispositions and the Principle of Least Action. Analysis, 2004, vol. 64, iss. 3, pp. 206-214.
Georgiev, Georgi Yordanov. A Quantitative Measure, Mechanism and Attractor for Self-Organization in Networked Complex Systems. Self-Organizing Systems. IWSOS 2012. Lecture Notes in Computer Science, 2012, vol. 7166, pp. 90-95. DOI: 10.1007/978-3-642-28583-7_9.
Stӧlzner, M. The principle of least action as the logical empiricist’s Shibboleth. Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics, 2003, vol. 34, iss.2, pp. 285-318. DOI: 10.1016/S1355-2198(03)00002-9.
Terekhovich, V. Metaphysics of the Principle of Least Action. Studies in History and Philosophy of Science. Part B: Studies in History and Philosophy of Modern Physics, 2018, vol. 62, pp. 189-201. DOI: 10.1016/j.shpsb.2017.09.004.
Mygal, V. P., But, A. V., Mygal, G. V., Klimenko, I. A. An interdisciplinary approach to study individuality in biological and physical systems functioning. Scientific Reports, 2016, vol. 6, pp. 387–391. DOI: 10.1038/srep29512.
Vstovsky, G. V., Kolmakov, A. G., Bunin, I. Zh. Vvedenie v mul'tifraktal'nuyu parametrizatsiyu struktur materialov [Introduction to multifractal parametrization of material structures]. Izhevsk: Research Center “Regular and Chaotic Dynamics”, 2001. 116 p.
Chumak, O. Entropii i fraktaly v analize dannykh [Entropy and fractals in data analysis]. R&C Dynamics, 2012. 82 p. DOI: 10.13140/2.1.4739.6800.
Mandelbrot, B. B. Self-affine fractal sets. Fractals in physics. Moscow, Mir Publ., 1988. 672 p.
Mygal, V. P., Klymenko, I. A., Mygal, G. V Influence of radiation heat transfer dynamics on crystal growth. Functional Materials, 2018, vol. 25, iss. 3, pp. 574-580. DOI: 10.15407/fm25.03.574.
Mygal, V. P., Klymenko, I. A., Mygal, G. V. Individuality of photoresponse dynamics of semiconductor sensors. Functional Materials, 2017, vol. 24, iss. 2, pp. 212-218. DOI: 10.15407/fm24.02.212.
Newby, G. B. The Strong Cognitive Stance as a Conceptual Basis for the Role of Information in Informatics and Information System Design. Cognitive space and information space. Journal of the American Society for Information Science and Technology, 2001, vol. 52, iss. 12, pp. 1026-1048. DOI: 10.1002/asi.1172.
Mygal, S., Borysenko, O. Design of Galicia: formation, development, national component. The European Journal of Humanities and Social Sciences, Premier Publishing s.r.o. Vienna, 2019, iss. 2, pp. 20-23.
Mygal, V. P., Mygal, G. V., Balabanova, L. M. Visualization of Signal Structure Showing Element Functioning in Complex Dynamic Systems – Cognitive Aspects. Journal of Nano- and Electronic Physics, 2019, vol. 11, no. 2, article no. 02013. DOI: 10.21272/jnep.11(2).02013.
Lee, J. D., Wickens, C. D., Liu, Y., Boyle, L. N. Designing for People: An introduction to human factors engineering. Charleston, SC: CreateSpace, 2017. ISBN 9781539808008.
Mygal, V., Klymenko, I., Mygal, G. 3D-Modeling of the Dynamics of Real Processes of Different Nature. Integrated Computer Technologies in Mechanical Engineering. Lecture Notes in Networks and Systems, 2020, vol. 188, pp. 633-643. Springer, Cham. DOI: 10.1007/978-3-030-66717-7_54.
DOI: https://doi.org/10.32620/reks.2021.4.01
Refbacks
- There are currently no refbacks.