Affiliation:
1. UFF – Fluminense Federal University Niterói Rio de Janeiro Brazil
2. CEPEL – Electrical Energy Research Center Nova Iguaçu Rio de Janeiro Brazil
Abstract
ABSTRACTThe integration of electric vehicles (EVs) into the power grid could pose challenges to power quality (PQ) depending on quantity of EVs and when they are connected. To mitigate these impacts without using drastic measures, such as disconnecting EVs, this study investigates centralized control strategies within parking facilities that prioritize EV charging based on individual State of Charge (SoC) levels. The study utilizes the IEEE 34 Bus system and conducts 3888 simulations for different scenarios to assess the impact of the quantity and placement of EVs in parking lots. The study applies the Monte Carlo method to compare the performance of different proposed controls: (i) limiting the charging current to a fixed level and (ii) varying the current based on the voltage droop step. Furthermore, Power Hardware‐in‐the‐Loop (PHIL) simulations were carried out to validate the hierarchical control using the droop step control, demonstrating the best average performance in the previous scenarios. The findings indicated that the control responded within the expected timeframe and successfully addressed voltage sag issues, maintaining PQ in the distribution system in most cases, with its performance being influenced by the placement of parking lots in the network. Additionally, it was confirmed through quartiles that the classification based on SoC leads to a more balanced charging time for different SoC levels.
Funder
Conselho Nacional de Desenvolvimento Científico e Tecnológico
Reference29 articles.
1. International Energy Agency – (IEA) “Global EV Outlook ”2023 accessed May 09 2023 https://www.iea.org/reports/global‐ev‐outlook‐2023.
2. International Energy Agency – (IEA) “Grid Integration of Electric Vehicles – A Manual for Policy Makers ”2022 accessed June 22 2023 https://www.iea.org/reports/grid‐integration‐of‐electric‐vehicles.
3. Power quality measurements of electric vehicles in the low voltage power grid
4. Impact of electric vehicle charging on the power demand of retail buildings