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Računalniško podprto dimenzioniranje električnih lastnosti kompenzacijskih naprav
ID Potočnik, Patrik (Author), ID Sadikov, Aleksander (Mentor) More about this mentor... This link opens in a new window

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Abstract
S kompenzacijo jalove energije se v elektroenergetiki ukvarjajo že več kot sto let, saj ta pomembno vpliva na zmanjšanje izgub in stabilnost omrežja. Na podlagi meritev se s simuliranjem delovanja samodejno določi velikost in razporeditev skupin kompenzacijske naprave, kar omogoča tudi sprotno simuliranje njihove obrabe. Ker algoritmi krmilnikov faktorja delavnosti niso javno dostopni, je bilo njihovo delovanje analizirano in računalniško simulirano. Pri tem so bile ugotovljene omejitve tako v zasnovi krmilnih algoritmov kot v uporabljenih materialih. Neprimerne možnosti so bile izločene že v začetni fazi, s čimer je bila povečana učinkovitost nadaljnjih analiz. Cilj naloge je bil doseči izbiro kompenzacije, ki je vsaj enako zanesljiva kot odločitev elektroenergetskega strokovnjaka. Rezultati simulacije so omogočili ovrednotenje pomembnosti parametrov.

Language:Slovenian
Keywords:kompenzacijska naprava, jalova energija, faktor delavnosti, kakovost električne moči
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FRI - Faculty of Computer and Information Science
Year:2025
PID:20.500.12556/RUL-173315 This link opens in a new window
COBISS.SI-ID:253611267 This link opens in a new window
Publication date in RUL:15.09.2025
Views:166
Downloads:39
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Secondary language

Language:English
Title:Computer aided design of the electrical characteristics of compensation devices
Abstract:
Reactive power compensation has been a topic in power engineering for more than a hundred years, as it plays a key role in reducing losses and improving network stability. Using measurement data, the size and distribution of compensation device groups were determined automatically by simulating their operation, which also enabled real-time assessment of wear. Since the algorithms of power factor controllers are not publicly available, their behavior was analyzed and replicated through computer simulation. The study identified limitations both in the design of the control algorithms and in the materials used. Inefficient or unsuitable options were eliminated at an early stage, which increased the effectiveness of subsequent analyses. The objective of the thesis was to achieve a compensation selection process that is at least as reliable as the decision of a power engineering expert. The simulation results further allowed the relative importance of individual parameters to be evaluated.

Keywords:capacitor bank, reactive power, power factor, power quality

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