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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

ISBN: 978-989-758-025-3

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 - Volume 1: SMARTGREENS, ISBN 978-989-758-025-3, 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 - Volume 1: SMARTGREENS,},
year={2014},
pages={118-125},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0004971801180125},
isbn={978-989-758-025-3},
}

TY - CONF

JO - Proceedings of the 3rd International Conference on Smart Grids and Green IT Systems - Volume 1: SMARTGREENS,
TI - Communication Reduced Interaction Protocol between Customer, Charging Station, and Charging Station Management System
SN - 978-989-758-025-3
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

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