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Low-risk Privacy-preserving Electric Vehicle Charging with Payments

2Citations signalées, ce qui n’est pas une note de qualité
1Institutions déclarées
1Pays d’affiliation déclarés

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Le résumé fourni par la source

and ordering requests and offers.Furthermore, some protocols propose blockchain technology for handling the payment.However, the proposed protocols often (i) do not cover customer privacy to a full extent; (ii) do not allow for combined bidding and payment transfer with limited risk for both, the EV and the charging station; and (iii) do not cover both, gridto-vehicle and vehicle-to-vehicle charging.Due to limited trust and anonymity in privacy-preserving systems, there is also a substantial financial risk for both, the EV (or the consumer in general) and the charging station (or the producer in general).While the EV runs the risk of paying without receiving a sufficient amount of energy (or any energy at all), the charging station runs the risk of providing energy and not receiving sufficient compensation.This is largely unaddressed in prior work.Following a privacy-preserving protocol for grid-to-vehicle charging presented in [11], in this paper, we present a comprehensive protocol for EV charging with payments.The protocol preserves the privacy of all participants and the location privacy of the EVs during the exploration and bidding phase.Furthermore, pseudonymity is preserved during the charging phase and the payment phase, and a parameter is proposed which allows for controlling risk.Two different implementations for transferring installments in exchange for energy are described and evaluated.These implementations are compared in terms of risk, scalability, performance and privacy.The rest of this paper is structured as follows: Section II describes EV charging, blockchain technology, hash timelocked contracts and state channels.Section III describes the proposed privacy-preserving protocol.Section IV evaluates the protocol with respect to risk, privacy and scalability.Section V provides an overview of related work.Section VI summarizes this paper. II. BACKGROUNDThis section summarizes the relevant background for EV charging and blockchain technology. A. Electric Vehicle ChargingOne of the most common types of EVs relies on batteries which need to be recharged from an electric power source [15].Depending on their capacity and usage, these batteries may retain significant portions of their initial charge over longer periods of time.Three different types of charging can be distinguished [15], [20]: (i) G2V (Grid-to-Vehicle) Charging: The EV is charged by the power grid.This is the most common case and is usually done via a charging station, see e.g., [15] Abstract-The increasing amount of electric vehicles and a growing electric vehicle ecosystem is becoming a highly heterogeneous environment with a large number of participants that interact and communicate.Finding a charging station, performing vehicle-to-vehicle charging or processing payments poses privacy threats to customers as their location and habits can be traced.In this paper, we present a privacy-preserving solution for grid-to-vehicle charging, vehicle-to-grid charging and vehicleto-vehicle charging, that allows for finding the right charging option in a competitive market environment and that allows for built-in payments with adjustable and limited risk for both, producers and consumers of electricity.The proposed approach builds on blockchain technology and extends a state-of-the-art protocol with payments, while still preserving the privacy of the users.The protocol is evaluated with respect to privacy, risk and scalability.It is shown that pseudonymity and location privacy (against third parties) is guaranteed throughout the protocol, even beyond a single protocol session.In addition, both, risk and scalability can be adjusted based on the used blockchain.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Low-risk Privacy-preserving Electric Vehicle Charging with Payments
Date Crossref
01/01/2021
Éditeur
Internet Society
Type
proceedings-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

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Les sujets associés

Blockchain Technology Applications and SecurityTransportation and Mobility InnovationsVehicular Ad Hoc Networks (VANETs)

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