Магістерські роботи (АЕМСЕП)
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Перегляд Магістерські роботи (АЕМСЕП) за Автор "Peresada, Sergiy"
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Документ Відкритий доступ Adaptive control of the interior permanent magnet synchronous motors(Igor Sikorsky Kyiv Polytechnic Institute, 2020) Rodkin, Dmytro Illich; Peresada, SergiyThesis contains: pages – 117, drawings – 38, tables – 23. The goal of the of the thesis lies in development of the control methods of the IPMSM with the purpose of its research and improvement of efficiency and performance of the electromechanical system. In this thesis, analytical review of the inductance determination methods for the IPMSM is presented. After that two tests for inductance determination of the interior permanent magnet synchronous motors are proposed, analyzed and experimentally verified. Four methods are proposed to use to obtain static and dynamic inductances from the tests data. Speed and position control algorithms are derived basing on the non saturated model of the motor and its effectiveness was researched by means of experiment and simulation for small saturated motors. After that position control algorithm with adaptation to the mechanical parameters is designed and tested via simulation. Stability is proved using the second Lyapunov method. Derived algorithms provide asymptotic tracking of the controlled coordinates, and decoupling of the direct current component and mechanic coordinate control subsystems.Документ Відкритий доступ Automatic control system of the direct photolithography writer with an autofocus algorithm(Igor Sikorsky Kyiv Polytechnic Institute, 2023) Isyp, Mykhailo Oleksandrovych; Peresada, SergiyThe thesis contains 95 pages, of them 75 – the main text, 45 figures, and 8 tables. The main purpose of the project is to develop an automatic focus control system for the direct lithography writing tool. Motivation lies in making such instrumentation more available for research laboratories. In the beginning, an analytical review of the current state microlithography technologies is made. Consequently, direct lithography writing is selected as the most effective method for microfabrication in the research area. Then, the main requirements for lithographic processes of direct writer systems are described, and the tool’s design is proposed. The direct lithography writer system is developed based on an open-source microscopy project, namely the OpenFlexure Microscope. The design's mechanical, optical, electrical, and computation subsystems are described, and modifications required for the lithography are applied. In addition, the device's mechanical properties are determined by calculations and measurements. The autofocus control problem is formulated following the proposed direct lithography writer design. The system with the 28BYJ-48 stepper motor is investigated by simulating the focus control model in MatLab/Simulink. For better performance, the RSF-8B-30 servomotor is proposed as an alternative, succeeding in accuracy and speed increasing for the focus control.