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Secure and privacy-aware proxy mobile IPv6 protocol for vehicle-to-grid networks

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

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Secure and privacy-aware proxy mobile IPv6 protocol for vehicle-to-grid networks. / Hashem-Eiza, Mahmoud; Shi, Qi; Marnerides, Angelos; Owens, Thomas.

2016 IEEE International Conference on Communications (ICC). IEEE, 2016. 7510934.

Research output: Contribution in Book/Report/Proceedings - With ISBN/ISSNConference contribution/Paperpeer-review

Harvard

Hashem-Eiza, M, Shi, Q, Marnerides, A & Owens, T 2016, Secure and privacy-aware proxy mobile IPv6 protocol for vehicle-to-grid networks. in 2016 IEEE International Conference on Communications (ICC)., 7510934, IEEE, IEEE International Conference on Communications , Kuala Lumpur , Malaysia, 23/05/16. https://doi.org/10.1109/ICC.2016.7510934

APA

Hashem-Eiza, M., Shi, Q., Marnerides, A., & Owens, T. (2016). Secure and privacy-aware proxy mobile IPv6 protocol for vehicle-to-grid networks. In 2016 IEEE International Conference on Communications (ICC) [7510934] IEEE. https://doi.org/10.1109/ICC.2016.7510934

Vancouver

Hashem-Eiza M, Shi Q, Marnerides A, Owens T. Secure and privacy-aware proxy mobile IPv6 protocol for vehicle-to-grid networks. In 2016 IEEE International Conference on Communications (ICC). IEEE. 2016. 7510934 https://doi.org/10.1109/ICC.2016.7510934

Author

Hashem-Eiza, Mahmoud ; Shi, Qi ; Marnerides, Angelos ; Owens, Thomas. / Secure and privacy-aware proxy mobile IPv6 protocol for vehicle-to-grid networks. 2016 IEEE International Conference on Communications (ICC). IEEE, 2016.

Bibtex

@inproceedings{03af0c71caf34f8dbeed3fa3ea5bd29d,
title = "Secure and privacy-aware proxy mobile IPv6 protocol for vehicle-to-grid networks",
abstract = "Vehicle-to-Grid (V2G) networks have emerged as a new communication paradigm between Electric Vehicles (EVs) and the Smart Grid (SG). In order to ensure seamless communications between mobile EVs and the electric vehicle supply equipment, the support of ubiquitous and transparent mobile IP communications is essential in V2G networks. However, enabling mobile IP communications raises real concerns about the possibility of tracking the locations of connected EVs through their mobile IP addresses. In this paper, we employ certificate-less public key cryptography in synergy with the restrictive partially blind signature technique to construct a secure and privacy-aware proxy mobile IPv6 (SP-PMIPv6) protocol for V2G networks. SP-PMIPv6 achieves low authentication latency while protecting the identity and location privacy of the mobile EV. We evaluate the SP-PMIPv6 protocol in terms of its authentication overhead and the information-theoretic uncertainty derived by the mutual information metric to show the high level of achieved anonymity.",
author = "Mahmoud Hashem-Eiza and Qi Shi and Angelos Marnerides and Thomas Owens",
note = "{\textcopyright}2016 IEEE. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE.; IEEE International Conference on Communications , ICC 2016 ; Conference date: 23-05-2016 Through 27-05-2016",
year = "2016",
month = may,
day = "22",
doi = "10.1109/ICC.2016.7510934",
language = "English",
isbn = "9781479966653",
booktitle = "2016 IEEE International Conference on Communications (ICC)",
publisher = "IEEE",
url = "http://icc2016.ieee-icc.org",

}

RIS

TY - GEN

T1 - Secure and privacy-aware proxy mobile IPv6 protocol for vehicle-to-grid networks

AU - Hashem-Eiza, Mahmoud

AU - Shi, Qi

AU - Marnerides, Angelos

AU - Owens, Thomas

N1 - ©2016 IEEE. Personal use of this material is permitted. However, permission to reprint/republish this material for advertising or promotional purposes or for creating new collective works for resale or redistribution to servers or lists, or to reuse any copyrighted component of this work in other works must be obtained from the IEEE.

PY - 2016/5/22

Y1 - 2016/5/22

N2 - Vehicle-to-Grid (V2G) networks have emerged as a new communication paradigm between Electric Vehicles (EVs) and the Smart Grid (SG). In order to ensure seamless communications between mobile EVs and the electric vehicle supply equipment, the support of ubiquitous and transparent mobile IP communications is essential in V2G networks. However, enabling mobile IP communications raises real concerns about the possibility of tracking the locations of connected EVs through their mobile IP addresses. In this paper, we employ certificate-less public key cryptography in synergy with the restrictive partially blind signature technique to construct a secure and privacy-aware proxy mobile IPv6 (SP-PMIPv6) protocol for V2G networks. SP-PMIPv6 achieves low authentication latency while protecting the identity and location privacy of the mobile EV. We evaluate the SP-PMIPv6 protocol in terms of its authentication overhead and the information-theoretic uncertainty derived by the mutual information metric to show the high level of achieved anonymity.

AB - Vehicle-to-Grid (V2G) networks have emerged as a new communication paradigm between Electric Vehicles (EVs) and the Smart Grid (SG). In order to ensure seamless communications between mobile EVs and the electric vehicle supply equipment, the support of ubiquitous and transparent mobile IP communications is essential in V2G networks. However, enabling mobile IP communications raises real concerns about the possibility of tracking the locations of connected EVs through their mobile IP addresses. In this paper, we employ certificate-less public key cryptography in synergy with the restrictive partially blind signature technique to construct a secure and privacy-aware proxy mobile IPv6 (SP-PMIPv6) protocol for V2G networks. SP-PMIPv6 achieves low authentication latency while protecting the identity and location privacy of the mobile EV. We evaluate the SP-PMIPv6 protocol in terms of its authentication overhead and the information-theoretic uncertainty derived by the mutual information metric to show the high level of achieved anonymity.

U2 - 10.1109/ICC.2016.7510934

DO - 10.1109/ICC.2016.7510934

M3 - Conference contribution/Paper

SN - 9781479966653

BT - 2016 IEEE International Conference on Communications (ICC)

PB - IEEE

T2 - IEEE International Conference on Communications

Y2 - 23 May 2016 through 27 May 2016

ER -