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Tehnologija odklopnikov v sistemu visokonapetostnega enosmernega prenosa električne energije
ID LESJAK, MATEVŽ (Author), ID Ažbe, Valentin (Mentor) More about this mentor... This link opens in a new window

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Abstract
Diplomsko delo opisuje osnovne načine delovanja sistema HVDC za prenos električne energije z visokonapetostnim enosmernim tokom. Sama zaščita takšnega sistema in glavni element za preprečevanje okvar, pa obravnavajo temeljne ideje, ki so se na tem področju sčasoma razvile. Vsebina je razdeljena na tri dele. V prvem delu je predstavljen osnovni namen HVDC sistema, njegova vloga v prenosnem sistemu električne energije in njegove aplikacije v EES. Slednje opisuje zgodovinski dolgoletni razvoj samega sistema HVDC, kjer je opisanih za takrat par večjih projektov prenosa enosmerne energije. Sčasoma se je HVDC sistem z uveljavitvijo močnostnih polprevodnikov imenovanih tiristorji preoblikoval v takšnega kot ga poznamo danes. V drugem delu je natančneje opisana sama struktura HVDC sistema, kjer sta najprej opisani pretvorniški tehnologiji LCC in VSC ter konfiguracije samega sistema, te so v izvedbi enosmerne sklopke in sistema z dvema ali več postajami. Poleg omenjenega pa so predstavljene in opisane posamezne komponente, ki so ključne za delovanje sistema HVDC. V zadnjem bolj obsežnem delu je predstavljeno trenutno stanje razvoja HVDC odklopnikov, delovanja same zaščite in odpravljanje napak v primeru okvar sistema. Na kar so prvo opisani štirje tipi HVDC odklopnikov, od katerih se dandanes zaradi samih zahtev omrežje prakticirata samo dva tipa, to sta ACI in MPE odklopnik. Njuna uporaba je zaradi implementiranja večjih HVDC omrežij še tako bolj pomembna zaradi omogočanja brezhibnega in učinkovitega delovanje le teh. Na podlagi zaščite pa so opisani različni principi lociranja napak na okvarjenih omrežjih ter tri strategije: selektivna, neselektivna in delno selektivna v primeru le teh za omogočanje selektivnosti omrežja in ohranjanja zdravih elementov samega HVDC omrežja.

Language:Slovenian
Keywords:HVDC, ACI HVDC odklopnik, MPE HVDC odklopnik, delovanje zaščite in odpravljanje napak sistemov HVDC
Work type:Bachelor thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2023
PID:20.500.12556/RUL-149578 This link opens in a new window
COBISS.SI-ID:164146691 This link opens in a new window
Publication date in RUL:07.09.2023
Views:1067
Downloads:50
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Secondary language

Language:English
Title:Technology of circuit breakers in the system of high voltage direct current transmission of electric energy
Abstract:
The thesis describes the fundamental operation modes of an HVDC system for electric power transmission. It delves into the protection of such a system and the main component for preventing faults, exploring the core concepts that have evolved in this field over time. The content is divided into three parts. The first part introduces the basic purpose of the HVDC system, its role in the electric power transmission network, and its applications in energy transmission systems (EES). The historical long-term development of the HVDC system is described, highlighting significant projects in direct current transmission. Over time, with the introduction of power semiconductor devices called thyristors, the HVDC system transformed into the form we know today. The second part provides a more detailed description of the structure of the HVDC system. It starts by explaining the converter technologies, LCC (Line-Commutated Converter) and VSC (Voltage-Source Converter), as well as the configurations of the system, including back-toback, two-terminal and multi-terminal setups. Additionally, the individual components crucial for the operation of the HVDC system are presented and described. In the final, more extensive part, the current state of HVDC circuit breakers' development is discussed, along with the operation of the protection system and fault clearance in case of system malfunctions. Four types of HVDC circuit breakers are initially described, with only two types ACI and MPE circuit breakers commonly practiced in today's networks due to network requirements. Their usage is increasingly important with the implementation of larger HVDC networks to ensure their flawless and efficient operation. Building upon the protection aspect, different fault location principles on faulty networks are described, along with three strategies: selective, non-selective, and partially selective, aimed at maintaining network selectivity and preserving healthy elements of the HVDC network.

Keywords:HVDC, ACI HVDC circuit breaker, MPE HVDC circuit breaker, operation of protection and fault handling in HVDC systems

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