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Deliverable D9.1 Use case specification, development, installation, commissioning, demonstration, and evaluation planning for the Danish demo

Authors :
Engelhardt, Jan
Pastorelli, Francesco
Pedersen, Kristoffer Laust
Ziras, Charalampos
Zepter, Jan Martin
Marinelli, Mattia
Baldursson, Benedikt Jón
Mikkelsen, Oliver Anker
Hach, Maria
Engelhardt, Jan
Pastorelli, Francesco
Pedersen, Kristoffer Laust
Ziras, Charalampos
Zepter, Jan Martin
Marinelli, Mattia
Baldursson, Benedikt Jón
Mikkelsen, Oliver Anker
Hach, Maria
Source :
Engelhardt , J , Pastorelli , F , Pedersen , K L , Ziras , C , Zepter , J M , Marinelli , M , Baldursson , B J , Mikkelsen , O A & Hach , M 2023 , Deliverable D9.1 Use case specification, development, installation, commissioning, demonstration, and evaluation planning for the Danish demo . Technical University of Denmark .
Publication Year :
2023

Abstract

This deliverable consolidates the final specifications for the Use Cases (UCs) to be demonstrated in Denmark. The deployment plan includes an initial assessment of the current infrastructure at both locations, i.e., Risø and Campus Bornholm. Risø is a research campus of the Technical University of Denmark (DTU) and located in Roskilde, while Campus Bornholm is an educational institute in the main town Rønne on the island of Bornholm. Based on the assessment of both locations, the present document presents a detailed description of hardware and software that will be implemented, and the associated construction works required for their deployment. The Electric Vehicle (EV) charging infrastructure is identical at both locations and comprises six Alternating Current (AC) chargers (22 kW), respectively. Each of the six AC chargers has two outlets, providing the opportunity for twelve EVs to be connected at the same time. The charging infrastructure is integrated via a 43 kW grid connection, and operated through a load management system enabling the maintenance of aggregated consumption below a specified threshold. This offers various benefits, e.g., preventing component overloading or the provision of both local and external services, such as peak shaving, increasing self-sufficiency, and frequency control. Each charger deployed in this project is equipped with a controller that enables the charger to make autonomous control decisions. This facilitates distributed control schemes where all chargers are provided with global quantities, such as the cluster reference power and the actual cluster consumption, based on which all chargers individually control their respective charging session to collectively meet the cluster requirements. Users of the charging infrastructure will start their charging sessions through an app, which is developed as part of the EV4EU project. The app allows the user to provide key inputs, such as the anticipated parking

Details

Database :
OAIster
Journal :
Engelhardt , J , Pastorelli , F , Pedersen , K L , Ziras , C , Zepter , J M , Marinelli , M , Baldursson , B J , Mikkelsen , O A & Hach , M 2023 , Deliverable D9.1 Use case specification, development, installation, commissioning, demonstration, and evaluation planning for the Danish demo . Technical University of Denmark .
Notes :
application/pdf, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1426750814
Document Type :
Electronic Resource