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ANALIZA OMREŽJA OB VGRADNJI PETERSENOVE DUŠILKE V RTP LITIJA
ID MILAR, JERNEJ (Author), ID Ažbe, Valentin (Mentor) More about this mentor... This link opens in a new window

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PID: 20.500.12556/rul/49ea6c18-c294-4512-b8be-4c21ed0532ea

Abstract
V pričujočem delu je predstavljena vgradnja Petersenove dušilke v RTP Litija, ki je v lasti Elektra Ljubljana, pri čemer je poudarek na analizi odzivov elektroenergetskega sistema preko izračunov in zajetih podatkov. Skozi leta se je način ozemljevanja transformatorjev neprestano spreminjal in vgradnja Petersenove dušilke doprinese nekatere spremembe sistema ter posledično zamenjavo in nadgradnjo nekaterih elementov (prenapetostni odvodniki, nadtokovna zaščita, APV, …). V prvem delu teoretičnega izhodišča je obravnavana tuljava s pomočjo klasične analize v Matlabu. Temelj prvega dela je opis PD v RTP Litija, kjer govorimo o karakteristikah, uglaševanju in delovanju regulatorja. V drugem delu so predstavljeni izračuni za model transformatorja, ki ga vnesemo v Simulink za primer TR1 in TR Radanja vas. Postopek je dolgotrajen, zato v delo ni vključenih vseh izračunov za posamezen transformator v omrežju. Nadalje je opisana Fourierova transformacija, ki jo uporabimo pri prikazovanju kazalcev direktnega, negativnega in ničnega zaporedja. Poudarek dajemo tudi na izračune parametrov obravnavanega daljnovoda in kablovoda ter polnilnega toka. Drugi del podpoglavij zaključuje nadtokovna zaščita, kjer predstavimo algoritem tokovno neodvisne zakasnjene karakteristike s časovnim stopnjevanjem, ki je uporabljena v izbranem omrežju. V zadnjem delu je sestavljen model omrežja v Matlabu (Simulink), kjer so simulirani različni odzivi sistema. Poudarek smo dali odzivom napetosti ob nujni vgradnji prenapetostnih odvodnikov z višjo karakteristiko, vrednosti odziva kompenziranega zemeljskostičnega toka in delovanju nadtokovne zaščite ob vgradnji PD.

Language:Slovenian
Keywords:Matlab, Petersenova dušilka, odzivi, simulacije, enopolni zemeljski kratki stik, Fourierova transformacija, nadtokovna zaščita
Work type:Master's thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2017
PID:20.500.12556/RUL-95801 This link opens in a new window
Publication date in RUL:21.09.2017
Views:4157
Downloads:779
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Secondary language

Language:English
Title:NETWORK ANALYSIS AFTER INSTALLATION OF PETERSEN COIL IN SUBSTATION LITIJA
Abstract:
In this thesis is presented installation of Petersen coil in substation Litija, which is owned by Elektro Ljubljana, with the emphasis on response analysis of electric power system through calculations and collected data. The way of neutral point earthing of transformers has been changing constantly over the years. Installation of Petersen coil brings some changes to the system and consequently the need for replacement and upgrade of certain elements (surge arrester, overcurrent protection, automatic reclosing equipment, …). In the first part of theoretical basis the coil is presented through classical analysis in Matlab. The basis of the first part is description of Petersen coil in substation Litija, where we discuss characteristics, tuning and operation of regulators. In the second part are presented calculations for the transformer model which is included in Simulink for examples TR1 and TR Radanja vas. Calculation procedure is extensive, therefore the thesis doesn't include all calculations for each transformer. Further on we describe Fourier transform, which we use for representation of positive, negative and zero sequence vectors. We put emphasis on calculation of parameters of considered power line, cable and charging current. The second part of subchapters is finished with overcurrent protection, where we present algorithm for current independent delayed characteristic with time escalation, which is used in choosen network. In the last part of the thesis we built a network model in Matlab (Simulink), where we simulated different responses of the system. We focused on voltage responses in conditions where surge arresters with higher characteristic are installed, response values of compensated ground fault current and operation of overcurrent protection, when Petersen coil is installed.

Keywords:Matlab, Petersen coil, responses, simulations, single-phase ground short circuit, Fourier transform, overcurrent protection

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