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Investigation of the Impact of Large-Scale Integration of Electric Vehicles for a Swedish Distribution Network
by
Theocharis, Andreas
, Johansson, Sylvester
, Persson, Jonas
, Lazarou, Stavros
in
Alternatives
/ Blackouts
/ Cables
/ Current capacity
/ Customers
/ Distribution networks
/ Electric power distribution
/ Electric power transmission networks
/ Electric transformers
/ Electric utilities
/ Electric vehicles
/ Electrical power
/ Electricity
/ Electricity distribution
/ Electrification
/ Emissions
/ Energiteknik
/ Energy Technology
/ Environmental policy
/ Greenhouse gases
/ Industrial simulation
/ Infrastructure
/ Integration patterns
/ Investments
/ LSI circuits
/ Simulation
/ Smart grid
/ Smart grid technology
/ Smart grids
/ Smart power grids
/ Tariffs
/ Transformers
/ Transport sectors
/ Voltage drop
/ Voltage drops
2019
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Investigation of the Impact of Large-Scale Integration of Electric Vehicles for a Swedish Distribution Network
by
Theocharis, Andreas
, Johansson, Sylvester
, Persson, Jonas
, Lazarou, Stavros
in
Alternatives
/ Blackouts
/ Cables
/ Current capacity
/ Customers
/ Distribution networks
/ Electric power distribution
/ Electric power transmission networks
/ Electric transformers
/ Electric utilities
/ Electric vehicles
/ Electrical power
/ Electricity
/ Electricity distribution
/ Electrification
/ Emissions
/ Energiteknik
/ Energy Technology
/ Environmental policy
/ Greenhouse gases
/ Industrial simulation
/ Infrastructure
/ Integration patterns
/ Investments
/ LSI circuits
/ Simulation
/ Smart grid
/ Smart grid technology
/ Smart grids
/ Smart power grids
/ Tariffs
/ Transformers
/ Transport sectors
/ Voltage drop
/ Voltage drops
2019
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Investigation of the Impact of Large-Scale Integration of Electric Vehicles for a Swedish Distribution Network
by
Theocharis, Andreas
, Johansson, Sylvester
, Persson, Jonas
, Lazarou, Stavros
in
Alternatives
/ Blackouts
/ Cables
/ Current capacity
/ Customers
/ Distribution networks
/ Electric power distribution
/ Electric power transmission networks
/ Electric transformers
/ Electric utilities
/ Electric vehicles
/ Electrical power
/ Electricity
/ Electricity distribution
/ Electrification
/ Emissions
/ Energiteknik
/ Energy Technology
/ Environmental policy
/ Greenhouse gases
/ Industrial simulation
/ Infrastructure
/ Integration patterns
/ Investments
/ LSI circuits
/ Simulation
/ Smart grid
/ Smart grid technology
/ Smart grids
/ Smart power grids
/ Tariffs
/ Transformers
/ Transport sectors
/ Voltage drop
/ Voltage drops
2019
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Investigation of the Impact of Large-Scale Integration of Electric Vehicles for a Swedish Distribution Network
Journal Article
Investigation of the Impact of Large-Scale Integration of Electric Vehicles for a Swedish Distribution Network
2019
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Overview
Social considerations for a sustainable future lead to market demands for electromobility. Hence, electrical power distribution operators are concerned about the real ongoing problem of the electrification of the transport sector. In this regard, the paper aims to investigate the large-scale integration of electric vehicles in a Swedish distribution network. To this end, the integration pattern is taken into consideration as appears in the literature for other countries and applies to the Swedish culture. Moreover, different charging power levels including smart charging techniques are examined for several percentages of electric vehicles penetration. Industrial simulation tools proven for their accuracy are used for the study. The results indicate that the grid can manage about 50% electric vehicles penetration at its current capacity. This percentage decreases when higher charging power levels apply, while the transformers appear overloaded in many cases. The investigation of alternatives to increase the grid’s capabilities reveal that smart techniques are comparable to the conventional re-dimension of the grid. At present, the increased integration of electric vehicles is manageable by implementing a combination of smart gird and upgrade investments in comparison to technically expensive alternatives based on grid digitalization and algorithms that need to be further confirmed for their reliability for power sharing and energy management.
Publisher
MDPI AG
Subject
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