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Ocena zanesljivosti slovenskega EES pri prehodu na nizkoogljično energijo
ID KUMER, SANDI (Author), ID Pantoš, Miloš (Mentor) More about this mentor... This link opens in a new window

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Abstract
Elektroenergetski sektor se danes sooča s številnimi izzivi, eden izmed njih je zmanjševanje emisij toplogrednih plinov in prehod na nizkoogljično proizvodnjo električne energije. V diplomski nalogi so analizirani potenciali nizkoogljičnih tehnologij, kot so obnovljivi viri energije ter jedrska energija. Diplomsko delo preučuje, kako taka tehnologija vpliva na zanesljivost delovanja EES s pomočjo zanesljivostnih kazalnikov »razmerje med inštalirano močjo sistema ter konico odjema električne energije« (angl. Generation reserve margin) ter »pričakovano tveganje izpada napajanja« (angl. Loss of Load expectation). Pomemben bo predvsem LOLE, ki bo s pomočjo napovedi porabe električne energije podal število ur v letu, ko proizvodnja ne bo zmogla kriti porabe električne energije. Oblikovali bomo več scenarijev nizkoogljičnega elektroenergetskega sektorja in si pogledali, kako njegova sestava vpliva na omenjene kazalce zanesljivosti. S pomočjo izračuna LOLE v odvisnosti od uvoza električne energije bomo opisali tudi stopnjo samozadostnosti. Rezultati in ugotovitve bodo prispevali k boljšemu razumevanju vpliva nizkoogljičnega prehoda na zanesljivost EES, kar lahko služi kot izhodišče za oblikovanje načrta za prihodnji elektroenergetski sistem, ki bo zanesljiv ter prispeval minimalno emisij.

Language:Slovenian
Keywords:Loss of load expectation, zanesljivost, nizkoogljična energija, obnovljivi viri energije, jedrska energija, pokrivanje porabe
Work type:Bachelor thesis/paper
Organization:FE - Faculty of Electrical Engineering
Year:2023
PID:20.500.12556/RUL-149576 This link opens in a new window
COBISS.SI-ID:163667715 This link opens in a new window
Publication date in RUL:07.09.2023
Views:750
Downloads:25
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Secondary language

Language:English
Title:Reliability Assessment of the Slovenian Power System in the transition to low-carbon energy
Abstract:
Today, the electricity sector faces many challenges, one of which is the reduction of greenhouse gas emissions and the transition to low-carbon electricity production. The thesis analyses the potential of low-carbon technologies such as renewable energy sources and nuclear energy. As part of this work, it is examined how such technology affects reliability of power system operation with the help of reliability indicators "Generation reserve margin", which gives us the relationship between the installed power of the system and the peak of electricity consumption, and "Loss of Load Expectation", which refers on the probability of loss of electricity supply. LOLE will be especially important, which will give us the number of hours in the year when production will not be able to meet demand with the help of electricity consumption forecasts. We will design several scenarios of the low-carbon electricity sector and look at how its composition affects the mentioned reliability indicators. Using the calculation of the indicator depending on the import of electricity, we will also describe the ability to be self-sufficient. The results and findings will contribute to a better understanding of how the low-carbon transition affects reliability, which can serve as a starting point for creating a plan for a future power system that will be reliable and emit minimal emissions.

Keywords:Loss of load expectation, reliability, low-carbon energy, renewable energy sources, nuclear energy, electricity demand

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