UDC 519.86
4DOI: 10.36871/2618-9976.2024.08.004
Authors
Elena I. Obukhova,
Student, Laboratory Assistant, Peter the Great St. Petersburg Polytechnic University, St. Petersburg,
Russia
Alexander A. Borzov,
Rector, St. Petersburg Restoration and Construction Institute, St. Petersburg, Russia
Ungvari Laslo,
Candidate of Economic Sciences, Professor, Peter the Great St. Petersburg Polytechnic University,
St. Petersburg, Russia
Egor I. Okunev,
Senior Lecturer, Peter the Great St. Petersburg Polytechnic University, St. Petersburg, Russia
Sergey I. Shanygin,
Doctor of Economic Sciences, Professor, St. Petersburg State University, St. Petersburg, Russia
Abstract
This study examines the application of a fuzzy-set approach to modeling the consistency of the external environment and transtemporal innovative solutions using the example of a group of technologies related to the specifics of operating aviation equipment at high altitude. The use of a fuzzy-set approach allows us to take into account the complex influence of environmental factors, which in the long term will define the technology as transtemporal, that is, capable of maintaining relevance and competitiveness over a long period of time. The aim of the study is to develop an innovation assessment model that will allow assessing the readiness to implement aviation technologies, taking into account the specifics of the external environment. For this purpose, the main indicators of the external environment that influence the development of the specified group of technologies will be determined. An analysis of the current state of the innovation environment was conducted, which will allow us to identify key trends and barriers to the implementation of innovations. Based on the data obtained, a model for assessing readiness for technology implementation will be developed, taking into account all significant external factors. The results of the study will make it possible to determine the prospects for the development of innovations as transtemporal in the existing external environment and to identify conditions that require changes for the effective implementation of projects. This approach will ensure more accurate forecasting of the results of innovation implementation and will allow targeted actions to be taken to ensure the successful implementation of transtemporal technologies. As an example of the implementation of the model, a group of aviation technologies designed for operation at high altitudes is considered, which makes the study relevant for the aerospace industry and contributes to the development of new directions in the field of hightech solutions.
Keywords
Fuzzy-set approach, Transtemporal innovations, External environment, Aviation technologies

