Energy storage solutions for electric bus fast charging stations : Cost optimization of grid connection and grid reinforcements

This study investigates the economic benefits of installing a lithium-ion battery storage (lithium iron phosphate, LFP and lithium titanate, LTO) at an electric bus fast charging station.  It is conducted on a potential electric bus system in the Swedish city Västerås, and based on the existing bus...

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Main Author: Andersson, Malin
Format: Others
Language:English
Published: Uppsala universitet, Elektricitetslära 2017
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-317283
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spelling ndltd-UPSALLA1-oai-DiVA.org-uu-3172832017-03-15T05:26:10ZEnergy storage solutions for electric bus fast charging stations : Cost optimization of grid connection and grid reinforcementsengAndersson, MalinUppsala universitet, Elektricitetslära2017electric busesenergy storagelithium-ion batterydistribution gridfast chargingThis study investigates the economic benefits of installing a lithium-ion battery storage (lithium iron phosphate, LFP and lithium titanate, LTO) at an electric bus fast charging station.  It is conducted on a potential electric bus system in the Swedish city Västerås, and based on the existing bus schedules and routes as well as the local distribution system. The size of the energy storage as well as the maximum power outtake from the grid is optimized in order to minimize the total annual cost of the connection. The assessment of the distribution system shows that implementing an electric bus system based on opportunity charging in Västerås does not cause over-capacity in the 10 kV grid during normal feeding mode. However, grid reinforcements might become necessary to guarantee potential backup feeding modes. Batteries are not a cost effective option to decrease grid owner investments in new transformers. However, battery energy storage have the possibility to decrease the annual cost of connecting a fast charging station to the low-voltage grid. The main advantage of the storage system is to decrease the fees to the grid owner. Of the studied batteries, LTO is the most cost effective solution because of its larger possible depth-of-discharge for a given cycle life. The most important characteristics, that determine if a fast charging station could benefit economically from an energy storage, is the bus frequency. The longer the time in between buses and the higher the power demand, the more advantageous is the energy storage. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-317283UPTEC ES, 1650-8300 ; 17 002application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic electric buses
energy storage
lithium-ion battery
distribution grid
fast charging
spellingShingle electric buses
energy storage
lithium-ion battery
distribution grid
fast charging
Andersson, Malin
Energy storage solutions for electric bus fast charging stations : Cost optimization of grid connection and grid reinforcements
description This study investigates the economic benefits of installing a lithium-ion battery storage (lithium iron phosphate, LFP and lithium titanate, LTO) at an electric bus fast charging station.  It is conducted on a potential electric bus system in the Swedish city Västerås, and based on the existing bus schedules and routes as well as the local distribution system. The size of the energy storage as well as the maximum power outtake from the grid is optimized in order to minimize the total annual cost of the connection. The assessment of the distribution system shows that implementing an electric bus system based on opportunity charging in Västerås does not cause over-capacity in the 10 kV grid during normal feeding mode. However, grid reinforcements might become necessary to guarantee potential backup feeding modes. Batteries are not a cost effective option to decrease grid owner investments in new transformers. However, battery energy storage have the possibility to decrease the annual cost of connecting a fast charging station to the low-voltage grid. The main advantage of the storage system is to decrease the fees to the grid owner. Of the studied batteries, LTO is the most cost effective solution because of its larger possible depth-of-discharge for a given cycle life. The most important characteristics, that determine if a fast charging station could benefit economically from an energy storage, is the bus frequency. The longer the time in between buses and the higher the power demand, the more advantageous is the energy storage.
author Andersson, Malin
author_facet Andersson, Malin
author_sort Andersson, Malin
title Energy storage solutions for electric bus fast charging stations : Cost optimization of grid connection and grid reinforcements
title_short Energy storage solutions for electric bus fast charging stations : Cost optimization of grid connection and grid reinforcements
title_full Energy storage solutions for electric bus fast charging stations : Cost optimization of grid connection and grid reinforcements
title_fullStr Energy storage solutions for electric bus fast charging stations : Cost optimization of grid connection and grid reinforcements
title_full_unstemmed Energy storage solutions for electric bus fast charging stations : Cost optimization of grid connection and grid reinforcements
title_sort energy storage solutions for electric bus fast charging stations : cost optimization of grid connection and grid reinforcements
publisher Uppsala universitet, Elektricitetslära
publishDate 2017
url http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-317283
work_keys_str_mv AT anderssonmalin energystoragesolutionsforelectricbusfastchargingstationscostoptimizationofgridconnectionandgridreinforcements
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