Frame Representation of an Intelligent Technical Agent of a Human-machine Interface for Creating Innovative Projects
https://doi.org/10.55648/1998-6920-2023-17-1-33-45
Abstract
Support for the development of projects at the level of inventions obtained by resolving technical contradictions in technical systems is limited to disconnected clusters of engineering space and has no unity. The high level of technical solutions found, capable of bringing the basic technical system closer to perfection, did not receive information support at the stage of transition from a conceptual solution to the use of CAD technologies, for some reason. As a result of the work carried out by the authors, the boundaries of the unformalized area between clusters are determined and a model of its filling is constructed, the task of which is to restore the data deficit responsible for the output parameters of the technical system. One of the variants of such models of pre-project research in the engineering space characterized by a significant reduction in the number of parameters of the technical system responsible for achieving output indicators and requirements of CALS technologies is proposed. The scope of the model implementation within the framework of a human-machine interface using data of distinctive features and their parameters distributed in the operational area of a technical system with a pronounced technical difference is proposed.
About the Authors
E. Yu. MerzlyakovaRussian Federation
Ekaterina Yu. Merzlyakova, Cand. of Sci. (Engineering), Docent of the Department of Applied Mathematics and Cybernetics
630102, Novosibirsk, Kirov St. 86
V. G. Sibiryakov
Russian Federation
Vissarion G. Sibiryakov, Cand. of Sci. (Engineering), master of TRIZ, inventor of the USSR, Director
630000, Novosibirsk, Zhukovsky str., 106, room 2
S. N. Reutov
Russian Federation
Sergei N. Reutov, Specialist of the third level of TRIZ
630099, Novosibirsk, Shchetinkina str., 33
Yu. V. Eltyshev
Russian Federation
Yuri V. Eltyshev, Senior Lecturer of the Department of Mechatronic Systems of Technological Machines and Materials
References
1. Merzlyakova E. Yu. CHelovekomashinnoe vzaimodejstvie [Human-machine interaction]. Novosibirsk, Sibirskii gosudarstvennyi universitet telekommunikatsii i informatiki, 2015, 34 p.
2. Merzlyakova E. Yu. Vizual'noe programmirovanie i cheloveko-mashinnoe vzaimodejstvie [Visual programming and human-machine interaction]. Novosibirsk, Sibirskii gosudarstvennyi universitet telekommunikatsii i informatiki, 2022, 49 p.
3. Makarenko S. I., Solovyova O. S. Semanticheskaya interoperabel'nost' vzaimodejstviya elementov v setecentricheskih sistemah [Semantic interoperability of interaction of elements in network-centric systems]. ZHurnal radioelektroniki, 2021, no. 6, DOI: 10.30898/1684-1719.2021.6.3. EDN FUZTJY.
4. Merzlyakova E. Yu., Eltyshev Yu. V. Analiz traektorii prohozhdeniya razrabotki naukoemkih tekhnicheskih ob"ektov [Analysis of the trajectory of the development of science-intensive technical objects]. Nauchnye issledovaniya XXI veka, 2021, no. 1(9), pp. 150-156. EDN ZDSQHF.
5. Al'tshuller G. S. Najtiideyu:Vvedenie v TRIZ – teoriyu resheniya izobretatel'skih zadach [Finding an idea: An introduction to the TRIZ theory of inventive problem solving]. 5th ed. Moscow, Al'pina Pablisher, 2012, 440 p.
6. Merzlyakova E. Yu., Eltyshev Yu. V., Nikitin G. I. Postroenie chetyrekhslojnoj modeli na traektorii prohozhdeniya naukoemkih proektov v neformalizovannoj zone [Construction of a four-layer model on the trajectory of high-tech projects in an informal zone]. Innovacionnaya nauka, 2021, no. 3, pp. 33-39. EDN VQYYQA.
7. Gimadi E. H., Glebov N.I. Matematicheskie modeli i metody prinyatiya reshenij [Mathematical models and methods of decision-making]. Novosibirsk, Novosibirskij gosudarstvennyj universitet, 2008, 163 p.
8. Merzlyakova E. Yu., Sibiryakov V. G., Eltyshev Yu. V. Cifrovaya transformaciya nacional'noj idei inzhenernogo prostranstva [Digital transformation of the national idea of engineering space]. Vestnik Novosibirskogo gosudarstvennogo universiteta. Seriya: Informacionnye tekhnologii, 2022, vol. 20, no. 2, pp. 50-59. DOI: 10.25205/1818-7900-2022-20-2-50-59. EDN EHJUDQ.
9. Petrov E. N. Vosstanovlenie prostyh linejnyh i iteracionnyh funkcij sredstvami MATLAB [Restoration of simple linear and iterative functions by means of MATLAB]. Molodoj uchenyj, 2017, no.5 (139), pp. 52-55, available at: https://moluch.ru/archive/139/39180 (accessed 28.10.2022).
10. Rozenberg V. L. Zadacha dinamicheskogo vosstanovleniya neizvestnoj funkcii v linejnom stohasticheskom differencial'nom uravnenii [The problem of dynamic recovery of an unknown function in a linear stochastic differential equation]. Avtomatika i telemekhanika, 2007, no. 11, pp. 76-87.
11. Anur'ev V. I. Spravochnik konstruktora-mashinostroitelya. Tom1 [Reference book of adesignermachine builder. vol. 1. 5nded]. Moskow, Mashinostroenie, 1979, 728 p.
Review
For citations:
Merzlyakova E.Yu., Sibiryakov V.G., Reutov S.N., Eltyshev Yu.V. Frame Representation of an Intelligent Technical Agent of a Human-machine Interface for Creating Innovative Projects. The Herald of the Siberian State University of Telecommunications and Information Science. 2023;17(1):33-45. (In Russ.) https://doi.org/10.55648/1998-6920-2023-17-1-33-45