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Communication Reduced Interaction Protocol between Customer, Charging Station, and Charging Station Management System

Topics: Architectures for Smart Grids; Energy Management Systems (EMS); Energy Monitoring; Greener Systems Planning and Design; Integration of Smart Appliances; Interoperability and Strategies to Meet Communications Demands; Optimization Techniques for Efficient Energy Consumption; Renewable Energy Resources; Scalable Infrastructures for Smart Grids; Scheduling and Switching Power Supplies; Smart Grid Specific Protocols; Virtualization for Reducing Power Consumption

Authors: Karl-Heinz Krempels 1 ; Christoph Terwelp 1 ; Stefan Wüller 1 ; Tilman Frosch 2 and Sevket Gökay 1

Affiliations: 1 RWTH Aachen University, Germany ; 2 Ruhr-University Bochum, Germany

Keyword(s): Charging Station, Interaction Protocol, Authentication Protocol, Reduced Communication Effort, QR Code.

Related Ontology Subjects/Areas/Topics: Architectures for Smart Grids ; Artificial Intelligence ; Biomedical Engineering ; Complex Systems Modeling and Simulation ; Data Engineering ; Energy and Economy ; Energy Management Systems (EMS) ; Energy Monitoring ; Energy-Aware Systems and Technologies ; Enterprise Information Systems ; Greener Systems Planning and Design ; Health Information Systems ; Integration of Smart Appliances ; Interoperability ; Knowledge Management and Information Sharing ; Knowledge-Based Systems ; Ontologies and the Semantic Web ; Optimization Techniques for Efficient Energy Consumption ; Renewable Energy Resources ; Scalable Infrastructures for Smart Grids ; Scheduling and Switching Power Supplies ; Simulation and Modeling ; Smart Grid Specific Protocols ; Smart Grids ; Software Agents and Internet Computing ; Symbolic Systems ; Virtualization for Reducing Power Consumption

Abstract: The emerging build-ups of charging station infrastructures require sufficiently secure and economic authentication protocols. Existing protocols for the purpose of authenticating a customer against a charging station have the inherent disadvantage that they expect a network connection to the management system, produce a communication overhead, or might reveal sensitive customer data depending on the protocol. The protocol, provided by us, enables a multiple-operator customer-to-charging station authentication system. The particularity of the protocol is that it does not require a permanent network connection between charging stations and a corresponding management system, reduces the communication overhead between the involved entities, and protects sensitive customer data at a high rate.

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Paper citation in several formats:
Krempels, K.; Terwelp, C.; Wüller, S.; Frosch, T. and Gökay, S. (2014). Communication Reduced Interaction Protocol between Customer, Charging Station, and Charging Station Management System. In Proceedings of the 3rd International Conference on Smart Grids and Green IT Systems - SMARTGREENS; ISBN 978-989-758-025-3; ISSN 2184-4968, SciTePress, pages 118-125. DOI: 10.5220/0004971801180125

@conference{smartgreens14,
author={Karl{-}Heinz Krempels. and Christoph Terwelp. and Stefan Wüller. and Tilman Frosch. and Sevket Gökay.},
title={Communication Reduced Interaction Protocol between Customer, Charging Station, and Charging Station Management System},
booktitle={Proceedings of the 3rd International Conference on Smart Grids and Green IT Systems - SMARTGREENS},
year={2014},
pages={118-125},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0004971801180125},
isbn={978-989-758-025-3},
issn={2184-4968},
}

TY - CONF

JO - Proceedings of the 3rd International Conference on Smart Grids and Green IT Systems - SMARTGREENS
TI - Communication Reduced Interaction Protocol between Customer, Charging Station, and Charging Station Management System
SN - 978-989-758-025-3
IS - 2184-4968
AU - Krempels, K.
AU - Terwelp, C.
AU - Wüller, S.
AU - Frosch, T.
AU - Gökay, S.
PY - 2014
SP - 118
EP - 125
DO - 10.5220/0004971801180125
PB - SciTePress