diplomsko delo
Danilo Osojnik (Author), Martin Petrun (Mentor)

Abstract

V okviru diplomskega dela smo načrtovali vodenje sinhronskega reluktančnega stroja, ki smo ga nato izvedli na eksperimentalnem sistemu. Za načrtovanje in sintezo vodenja smo izpeljali ustrezen model stroja, ki smo ga izpeljali s pomočjo teorije vezij. V diplomskem delu je prikazan nelinearen model obravnavanih strojev in pretvorba le-tega v linearen model s pomočjo ustreznih matematičnih transformacij. Obravnavanemu modelu smo nato z različnimi preizkusi določili parametre in s programskim orodjem Matlab in Simulink simulacijsko preizkusili načrtovano kaskadno regulacijo hitrosti. Na koncu smo na reluktančnem stroju Siemens 1FP1014R40DB221AB4-Z vodenje tudi eksperimentalno preizkusili. Za potrebe vodenja smo uporabili močnostni pretvornik TIDA-00366 in razvojno orodje TI Launchpad 28379D.

Keywords

sinhronski reluktančni stroj;dinamični model;kaskadna regulacija hitrosti;diplomske naloge;

Data

Language: Slovenian
Year of publishing:
Typology: 2.11 - Undergraduate Thesis
Organization: UM FERI - Faculty of Electrical Engineering and Computer Science
Publisher: [D. Osojnik]
UDC: 621.313.23.072(043.2)
COBISS: 86633475 Link will open in a new window
Views: 273
Downloads: 38
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Other data

Secondary language: English
Secondary title: Implementation of control of a synchronous reluctance machine
Secondary abstract: As part of this thesis, we designed the cascade speed control of a synchronous reluctance machine, which was then implemented on an experimental system. For the design and synthesis of the control, we required an appropriate machine model, which we derived using circuit theory. The thesis presents a non-linear model and its transformation into a linear one using adequate mathematical transformations. We determined the parameters of the machine with various tests. Next we simulated the cascade speed control with the software tools Matlab and Simulink. To conclude the experimental work, we tested the control on the laboratory experimental system using a Siemens 1FP1014R40DB221AB4-Z synchronous reluctance machine, a TIDA-00366 power converter and a TI Launchpad 28379D development board.
Secondary keywords: synchronous reluctance machine;dynamic model;cascade speed control;TI Launchpad 28379D;
Type (COBISS): Bachelor thesis/paper
Thesis comment: Univ. v Mariboru, Fak. za elektrotehniko, računalništvo in informatiko, Elektrotehnika
Pages: XV, 100 str.
ID: 13293659
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