Publication result detail

Mathematical Model of Fast Charging Station with Integrated Accumulators Impact on Low Voltage Distribution Network

MASTNÝ, P.; MORÁVEK, J.; VRÁNA, M.; WASSERBAUER, V.; VOJTEK, M.

Original Title

Mathematical Model of Fast Charging Station with Integrated Accumulators Impact on Low Voltage Distribution Network

English Title

Mathematical Model of Fast Charging Station with Integrated Accumulators Impact on Low Voltage Distribution Network

Type

Paper in proceedings (conference paper)

Original Abstract

The goal of presented simulation of operating conditions was to demonstrate possibilities (advantages and disadvantages) of integrated batteries during operation of FChS and their possible impact on the connection point to the low voltage electric network.

English abstract

The goal of presented simulation of operating conditions was to demonstrate possibilities (advantages and disadvantages) of integrated batteries during operation of FChS and their possible impact on the connection point to the low voltage electric network.

Keywords

Electro mobility; distribution network; fast charger; accumulator; hybrid system; renewable energy

Key words in English

Electro mobility; distribution network; fast charger; accumulator; hybrid system; renewable energy

Authors

MASTNÝ, P.; MORÁVEK, J.; VRÁNA, M.; WASSERBAUER, V.; VOJTEK, M.

RIV year

2018

Released

17.05.2017

Publisher

VSB – Technical University of Ostrava

Location

Ostrava, Czech Republic

ISBN

978-1-5090-6406-9

Book

Proceedings of the 2017 18th International Scientific Conference on Electric Power Engineering (EPE)

Edition

first

Pages from

637

Pages to

642

Pages count

6

URL

BibTex

@inproceedings{BUT137762,
  author="Petr {Mastný} and Jan {Morávek} and Michal {Vrána} and Vojtěch {Wasserbauer} and Martin {Vojtek}",
  title="Mathematical Model of Fast Charging Station with Integrated Accumulators
Impact on Low Voltage Distribution Network",
  booktitle="Proceedings of the 2017 18th International Scientific Conference on Electric Power Engineering (EPE)",
  year="2017",
  series="first",
  pages="637--642",
  publisher="VSB – Technical University of Ostrava",
  address="Ostrava, Czech Republic",
  doi="10.1109/EPE.2017.7967302",
  isbn="978-1-5090-6406-9",
  url="https://ieeexplore.ieee.org/document/7967302"
}