Technical Systems Theory
Type: selectiveLecturer: Boris TymoshevskiiYear of preparation: 2ndSemester: 4thNumber of credits: 5 Number of modules: 1Number of content modules: 4Total number of hours: 150Type of control: testWork programme 2024
Acquired competences
● Providing education applicants with the fundamental knowledge and skills necessary for the analysis, design and optimization of technical systems of various levels of complexity. Applicants must learn to systematically approach the solution of engineering problems, understand the principles of operation and interaction of components in complex technical systems, evaluate their reliability, efficiency and stability. It is also important to develop the ability to apply modern modeling and optimization methods to improve technical systems, taking into account economic, environmental and social aspects.
Learning outcomes
● know the basic principles of building technical systems;● determine the means of functioning and properties of technical systems;● know the basic terminology of design;● use theory and working methods of design;● analyze the technical problem as a whole, from the standpoint of a systematic approach;● to predict the development of the technical system;● evaluate the system based on modeling, and represent the system in different forms;● to choose the rational type and composition of the technical system;● use scientific and technical information to develop and create technical systems;● perform an assessment of the perfection of technical systems, which use internal combustion engines and other power equipment;● work with regulatory and technical documentation to improve technical systems based on internal combustion engines and auxiliary energy technology equipment.
Модуль 1.
Content module 1.
Topic 1. Basic concepts of the theory of technical systems. Connection of the theory of technical systems with other disciplines. Definition of systems.
Topic 2. The essence of the system approach, formalization of system representations. Types of systems and tasks.
Topic 3. Transformation system and its elements. Model and elements of the technical process..
Topic 3. Parameters and efficiency of the technical process. Classifications of technical processes. General features of technical objects.
Topic 4. General model of technical objects. Typical models of technical objects on examples of internal combustion engines, installations and power equipment.
Content module 2.
Topic 5. Classification of technical objects by the function performed, principle of operation, level of complexity, method of manufacture, degree of structural complexity, degree of originality of design and type of production.
Topic 6. Parameters of technical objects. Classifies technical object parameters and links between parameters.
Topic 7. Preparation of the list of specified parameters of technical objects and implementation of parameters.
Topic 8. Stages of creation and use of technical systems. Stages of creation and use of technical systems of a high level of complexity.
Content module 3.
Topic 9. Time sequence of stages of creation and use of technical systems. Patterns of evolution of technical systems.
Topic 10. Trends in technical development. Management of the process of technical development. Motivation of research and development.
Topic 11. Methodology for creating technical systems and the role of forecasting. Basic concepts of the design process.
Topic 12. Stages and stages of technical systems engineering design. Development of technical specifications. General technical basis of design.
Content module 4.
Topic 13. Design criteria. Concept of goal function and design constraints. The concept of optimal design of technical systems.
Topic 14. Modern views on the creation and prediction of the characteristics of new technical systems.
Topic 15. The concept of technical systems management, process optimization, quality criterion. Restrictions imposed on the management process. Protection of intellectual property in the field of power engineering.
● Study of the basic concepts of the theory of technical systems, mastering the subject and tasks of TTS.
● Analysis of the features of the system approach to the vehicle, familiarization with the types of systems and tasks.
● Study of the principles of the system of transformations and its elements. Representation of the model and elements of the technical process.
● Familiarization with the parameters and the efficiency of the technical process. Study of the classification structure of technical processes.
● Analysis of technical objects by the function performed, principle of operation, level of complexity, method of manufacture, degree of constructive complexity and type of production.
● Definition of parameters of technical objects. Mastering the basics of classification of technical parameters.
● Study of the basic principles of compiling a list of specified parameters of technical objects.
● Study of the stages of creation and use of technical systems of a high level of complexity.
● Determination of the sequence of stages of creation and use of technical systems.
● Familiarization with the trends of technical development. Management of the process of technical development.
● Familiarization with the methodology of creating technical systems and the role of forecasting. Define basic concepts about the design process.
● Analysis of stages and stages of technical systems design. Examples of technical assignment development.
● Definition of project criteria. The concept of the goal function and design constraints, the optimal design of technical systems.
● Familiarization with modern views on the creation and prediction of the characteristics of new technical systems.
● Study of basic concepts regarding the management of technical systems, process optimization. Sets restrictions that apply to the management process. Familiarization with the principles of intellectual property protection in the field of power engineering.
The achievements of the applicant are assessed according to the 100-point system of the University.
Основна література
1. Kuznetsov Yu. M. The theory of technical systems in aspects of research and technical creativity: textbook/Yu. M., Kuznetsov, B.I. Dowry. - Lutsk: LNTU, published. Tower-Print, 2023 - 285 s.
2. Sevostyanov I. V. Theory of Technical Systems Part I: textbook. Manual/I. V. Sevostyanov. - Vinnitsa: VNTU, 2004 - 124 p.
3. Loveikin V. S. Theory of technical systems: teaching manual/V. S. Loveikin, Yu. A. Romasevich. - Kyiv: issued. NUBPU, 2017 - 292 s.
4. Kuznetsov Yu. M. Theory of technical systems: textbook/Yu. M. Kuznetsov, Yu. K. Novoselov, I. V. Lutsiv. - Sevastopol: SevNTU, 2011. - 246 s.
5. Kravets S.V. Theory of technical systems. Site. Manual/S. V. Kravets, A. A. Nechedyuk, O. L. Romanovsky. - Rivne: NUVGP, 2015 - 139 p.
Supporting literature
1. Kuznetsov Yu. M. Forecasting the development of technical systems: tutorial/Yu. M. Kuznetsov, R. A. Sklyarov; edited by Yu. M. Kuznetsova. - K.: ZMOK LLC - Gnosis PE, 2004. - 323 s.
2. Pridalny B. I. Electronic manual on the discipline: "Theory of technical systems" [Electronic resource ]/Pridniy B. I. - Lutsk, 2011. Access mode: http://lib.lntu.info/books/tf/kpv_ta_tm/2011/11-84/.
3. Virych S.A. Methodological guidelines for independent work on the normative educational discipline of professional and practical training "Theory of Technical Systems" (for students of the training direction 6.050503 "Mechanical Engineering "/S.A. Virych, M.A. Babenko. - Krasnoarmeysk: KII Publishing House, 2012. - 25 s.
4. Theory of technical systems. Methodological guidelines for studying the discipline and performing control tasks for students of ZDIA .../Compiler Koval M.V. Zaporozhye: ZDIA Publishing House, 2007 - 51 p.
5. Theory of technical systems (TTS) – its role for design theory and methodology and challenges in the future: Christian Weber, 2008. – 14 p.
6. Theory of Technical Systems – Educational Tool for Engineering. Wolfgang Ernst Eder. Universal Journal of Educational Research 4(6): 1395-1405, 2016. DOI: 10.13189/ujer.2016.040617. Available from: https://files.eric.ed.gov/fulltext/EJ1103203.pdf
Information resources on the Internet
1. Coursera, edX, Udemy - platforms with online courses in the theory of technical systems, system analysis, modeling and optimization.
2. IEEE Xplore Digital Library is a digital library containing scientific articles, conference materials and standards in the field of engineering and technical systems.
3. SpringerLink - access to scientific articles, books and journals covering modern research in the field of technical systems and engineering.