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Title | Standardizing life cycle organization: A synergetic quality management approach |
Authors |
Prokopovych, I.V.
Kokhanov, A.B. Khamitov, V.M. Tikhenko, V.M. Dašić, P. |
ORCID | |
Keywords |
additive manufacturing industrial growth production function state parameter synergetic order parameter |
Type | Article |
Date of Issue | 2023 |
URI | https://essuir.sumdu.edu.ua/handle/123456789/91594 |
Publisher | Sumy State University |
License | Creative Commons Attribution 4.0 International License |
Citation | Prokopovych I. V., Kokhanov A. B., Khamitov V. M, Tikhenko V. M., Dašić P. (2023). Standardizing life cycle organization: A synergetic quality management approach. Journal of Engineering Sciences, Vol. 10(1), pp. B1-B7, doi: 10.21272/jes.2023.10(1).b1 |
Abstract |
Standardization is essential for innovation (on the impacts on design, manufacturing, and operation
processes) and its dissemination, both within a country and internationally. A phenomenological information model
has been developed for the system of standards, which will be used as an information base for integrated quality
management systems, environmental safety, and energy saving depending on the type of products, requirements of
technical regulations, and conformity assessment procedures. Phase portraits of the life cycle system of complex
products were constructed, and a general expression for the Lyapunov exponents characterizing the overall behavior
of the dynamic system in phase space was obtained. The presence of particular areas to which, regardless of the initial
conditions, all phase trajectories rapidly evolve has been established. The critical conditions for the control
parameters were found. A diagram was constructed that determines the stability of the system states of the life cycle
of complex products. It was found that the processes of the life cycle of complex products are carried out in two
stages: in the first, there is a rapid evolution of components and parameters of technical and software tools, as well as
energetic elements of functional subsystems, which is reflected in a specific attractive section of phase portraits, in
the second, further slow development along it. |
Appears in Collections: |
Journal of Engineering Sciences / Журнал інженерних наук |
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