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Analiza delovanja pretvornika baterijskega hranilnika ob kratkih stikih v omrežju
ID Kopanja, Kolja (Author), ID Ažbe, Valentin (Mentor) More about this mentor... This link opens in a new window

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Abstract
Z opuščanjem klasičnih virov električne energije se zmanjšuje inercija elektroenergetskega sistema, ki je vsebovana v rotirajočih delih klasičnih elektrarn in zagotavlja stabilnost sistema ob motnjah. Priključitev električnih vozil in drugih velikih bremen povečuje obremenitev elektroenergetskega sistema, pri izpadu proizvodnje pa lahko pride do zmanjšanja stabilnosti omrežja. Stabilnost lahko izboljšamo s primerno regulacijo baterijskih hranilnikov energije. V diplomskem delu so predstavljene prednosti hranilnikov energije, njihov vpliv na omrežje ter izzivi pri regulaciji, zlasti v povezavi s trifaznim kratkostičnim tokom. Največja pozornost je namenjena regulaciji kratkostičnih tokov in načinom za povečanje stabilnosti sistema. Cilj naloge je bil preučiti metode regulacije napetosti in tokov ter njihov vpliv na kakovost omrežja. V programu Simulink smo zasnovali preprosto omrežje z baterijo in priključnim pretvornikom ter analizirali možnosti modeliranja ustrezne regulacije pretvornikov.

Language:Slovenian
Keywords:baterijski hranilniki, pretvorniki, regulacija, simulacija
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FE - Faculty of Electrical Engineering
Year:2025
PID:20.500.12556/RUL-168744 This link opens in a new window
Publication date in RUL:22.04.2025
Views:405
Downloads:86
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Secondary language

Language:English
Title:Analysis of battery storage converter operation during grid faults
Abstract:
With the phase-out of conventional energy sources, the inertia of the power system is decreasing. This inertia, which is contained in the rotating parts of traditional power plants, ensures the stability of the system in the event of disturbances. The connection of electric vehicles and other large loads increases the burden on the power system, and in the event of a production outage, the stability of the grid may be reduced. Stability can be improved through the proper regulation of battery energy storage systems. This thesis presents the advantages of energy storage systems, their impact on the grid, and the challenges in regulation, particularly concerning three-phase short-circuit currents. The main focus is on short-circuit current regulation and methods to enhance system stability. The aim of the thesis was to study voltage and current regulation methods and their impact on grid quality. In Simulink, we designed a simple network with a battery and a grid-connected converter and analyzed Simulink’s capabilities for modeling appropriate converter regulation.

Keywords:battery storage, inverters, regulation, simulation

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