The Noosphere Paradigm of the Development of Science and Artificial Intelligence

被引:7
作者
Palagin A.V. [1 ]
Kurgaev A.F. [1 ]
Shevchenko A.I. [2 ]
机构
[1] V. M. Glushkov Institute of Cybernetics, National Academy of Sciences of Ukraine, Kyiv
[2] Institute of Artificial Intelligence Problems, National Academy of Sciences of Ukraine and Ministry of Education and Science of Ukraine, Kyiv
关键词
artificial intelligence; disciplinary paradigm; information technology approach; knowledge-based system; natural-scientific picture of the World; noospheregenesis; ontological engineering; transdisciplinary paradigm;
D O I
10.1007/s10559-017-9952-4
中图分类号
TP182 [专家系统、知识工程];
学科分类号
1111 ;
摘要
The disciplinary, transdisciplinary, and noosphere paradigms of the development of science and a natural-scientific picture of the World are considered. The role of science, its information-technological component, and the role of artificial intelligence in the evolution of the modern society and noospheregenesis as a whole are described. The basic concepts of the modern paradigm of science are substantiated and formulated. Their essence lies in the efficient combination of problems of knowledge of Nature and society evolution within the framework of the transdisciplinary paradigm. © 2017, Springer Science+Business Media, LLC.
引用
收藏
页码:503 / 511
页数:8
相关论文
共 11 条
[1]  
Palagin A.V., Kurgaev A.F., Interdisciplinary scientific investigations: Optimization of system-information support, Visn. NAN Ukrainy, 3, pp. 14-25, (2009)
[2]  
Kurgaev A.F., Palagin A.V., The problem of scientific research effectiveness, International Journal Information Theories & Applications, 17, 1, pp. 88-99, (2010)
[3]  
Kurgaev A.F., Palagin A.V., On the subject of information support for scientific research, Visn. NAN Ukrainy, 8, pp. 33-48, (2015)
[4]  
A transdisciplinary paradigm for the development of science,” in: Proc. Vth All-Ukrainian Scientific-Practical Conf, Interdisciplinary Investigations of Actual Problems of Application of Information Technology in the Modern World, (2016)
[5]  
J. Bollen, H. Van de Sompel, A. Hagberg, L. Bettencourt, R. Chute, et al
[6]  
Vernadsky V.I., The Biosphere and the Noosphere [in Russian], (1989)
[7]  
Garkovenko A.V., Pakhomov A.A., Homology modeling of the spatial structure of GFP-like proteins, Modern Problems of Science and Education, 6, pp. 76-83, (2012)
[8]  
Shadbolt N., Berners-Lee T., Hall W., The semantic Web revisited, IEEE Intelligent Systems, 21, 3, pp. 96-101, (2006)
[9]  
Shevchenko A.I., (2003)
[10]  
Palagin A., Arrangement and functions of a “language, 7, 4, pp. 155-164, (2000)