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Ekonomska upravičenost investicije v baterijski hranilnik za namen zniževanja koničnih moči
ID Pavelić, Luka (Author), ID Berlec, Tomaž (Mentor) More about this mentor... This link opens in a new window

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Abstract
S prehodom v ogljično nevtralno družbo in širjenjem elektromobilnosti, se širi tudi infrastruktura za polnjenje vozil na električni pogon. Predvsem na obremenjenih tranzitnih poteh se hitro širijo tudi izredno zmogljive ultra hitre polnilnice, ki omogočajo hitro polnjenje električnih vozil. Hitro polnjenje vozil na električni pogon je ključni vidik razvoja sodobne mobilnosti, vendar je njegova učinkovitost močno odvisna od različnih dejavnikov. Dinamika hitrega polnjenja ni konstantna, saj ustvarja konice porabe moči, kar lahko predstavlja pomembno obremenitev za elektroenergetsko omrežje. V prizadevanju za optimizacijo in zmanjšanje teh konic smo raziskali uporabo baterijskih hranilnikov električne energije. V nalogi smo preučili način obračunavanja omrežnine in s pomočjo različnih metod preverili ekonomsko upravičenost investicije v baterijski hranilnik za namen zniževanja koničnih moči. Analize so pokazale, da zaradi visoke začetne investicije, investicija v baterijski hranilnik v kombinaciji z ultra hitrimi polnilnicami za zniževanje koničnih moči ni upravičena.

Language:Slovenian
Keywords:ekonomska upravičenost, baterijski hranilnik, elektromobilnost, hitre polnilnice, konična moč
Work type:Master's thesis/paper
Typology:2.09 - Master's Thesis
Organization:FS - Faculty of Mechanical Engineering
Place of publishing:Ljubljana
Publisher:[L. Pavelić]
Year:2024
Number of pages:XX, 57 str.
PID:20.500.12556/RUL-155372 This link opens in a new window
UDC:629.331-83:621.352:51-3(043.2)
COBISS.SI-ID:191681283 This link opens in a new window
Publication date in RUL:28.03.2024
Views:628
Downloads:130
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Secondary language

Language:English
Title:Economic feasibility study of investing in battery storage for the purpose of reducing peak power
Abstract:
With the transition to a carbon-neutral society and the increasing adoption of electromobility, the infrastructure for charging electric vehicles is also expanding. Particularly on busy transit routes, highly powerful ultra-fast charging stations, which enable rapid vehicle charging, are rapidly spreading. Fast charging of electric vehicles is a key aspect of the development of modern mobility, but its efficiency is heavily dependent on various factors. The dynamics of fast charging are not constant, as it generates peaks in power consumption, which can pose a significant burden on the electrical grid. In an effort to optimize and reduce these peaks, we have explored the use of battery energy storage systems. In our study, we examined the method of calculating network fees and, through various methods, assessed the economic feasibility of investing in a battery storage system for the purpose of reducing peak power demand. The analyses revealed that due to the high initial investment, the combination of a battery storage system with ultra-fast charging stations for peak power reduction is not justifiable.

Keywords:economic feasibility, battery storage, electromobility, fast charging stations, peak power

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