Compact Extensible Authentication Protocol for the Internet of Things: Enabling Scalable and Efficient Security Commissioning
Internet of Things security is one of the most challenging parts of the domain. Combining strong cryptography and lifelong security with highly constrained devices under conditions of limited energy consumption and no maintenance time is extremely difficult task. This paper presents an approach that...
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Online Access: | http://dx.doi.org/10.1155/2015/506284 |
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doaj-bc71df60e1bb4f87a46b73b8598461e12021-07-02T09:12:23ZengHindawi LimitedMobile Information Systems1574-017X1875-905X2015-01-01201510.1155/2015/506284506284Compact Extensible Authentication Protocol for the Internet of Things: Enabling Scalable and Efficient Security CommissioningMarcin Piotr Pawlowski0Antonio J. Jara1Maciej J. Ogorzalek2Institute of Information Systems, University of Applied Sciences Western Switzerland (HES-SO), 3960 Sierre, SwitzerlandInstitute of Information Systems, University of Applied Sciences Western Switzerland (HES-SO), 3960 Sierre, SwitzerlandDepartment of Information Technologies, Faculty of Physics, Astronomy and Applied Computer Science, Jagiellonian University, 30-348 Krakow, PolandInternet of Things security is one of the most challenging parts of the domain. Combining strong cryptography and lifelong security with highly constrained devices under conditions of limited energy consumption and no maintenance time is extremely difficult task. This paper presents an approach that combines authentication and bootstrapping protocol (TEPANOM) with Extensible Authentication Protocol (EAP) framework optimized for the IEEE 802.15.4 networks. The solution achieves significant reduction of network resource usage. Additionally, by application of EAP header compacting approach, further network usage savings have been reached. The EAP-TEPANOM solution has achieved substantial reduction of 42% in the number of transferred packets and 35% reduction of the transferred data. By application of EAP header compaction, it has been possible to achieve up to 80% smaller EAP header. That comprises further reduction of transferred data for 3.84% for the EAP-TEPANOM method and 10% for the EAP-TLS-ECDSA based methods. The results have placed the EAP-TEPANOM method as one of the most lightweight EAP methods from ones that have been tested throughout this research, making it feasible for large scale deployments scenarios of IoT.http://dx.doi.org/10.1155/2015/506284 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marcin Piotr Pawlowski Antonio J. Jara Maciej J. Ogorzalek |
spellingShingle |
Marcin Piotr Pawlowski Antonio J. Jara Maciej J. Ogorzalek Compact Extensible Authentication Protocol for the Internet of Things: Enabling Scalable and Efficient Security Commissioning Mobile Information Systems |
author_facet |
Marcin Piotr Pawlowski Antonio J. Jara Maciej J. Ogorzalek |
author_sort |
Marcin Piotr Pawlowski |
title |
Compact Extensible Authentication Protocol for the Internet of Things: Enabling Scalable and Efficient Security Commissioning |
title_short |
Compact Extensible Authentication Protocol for the Internet of Things: Enabling Scalable and Efficient Security Commissioning |
title_full |
Compact Extensible Authentication Protocol for the Internet of Things: Enabling Scalable and Efficient Security Commissioning |
title_fullStr |
Compact Extensible Authentication Protocol for the Internet of Things: Enabling Scalable and Efficient Security Commissioning |
title_full_unstemmed |
Compact Extensible Authentication Protocol for the Internet of Things: Enabling Scalable and Efficient Security Commissioning |
title_sort |
compact extensible authentication protocol for the internet of things: enabling scalable and efficient security commissioning |
publisher |
Hindawi Limited |
series |
Mobile Information Systems |
issn |
1574-017X 1875-905X |
publishDate |
2015-01-01 |
description |
Internet of Things security is one of the most challenging parts of the domain. Combining strong cryptography and lifelong security with highly constrained devices under conditions of limited energy consumption and no maintenance time is extremely difficult task. This paper presents an approach that combines authentication and bootstrapping protocol (TEPANOM) with Extensible Authentication Protocol (EAP) framework optimized for the IEEE 802.15.4 networks. The solution achieves significant reduction of network resource usage. Additionally, by application of EAP header compacting approach, further network usage savings have been reached. The EAP-TEPANOM solution has achieved substantial reduction of 42% in the number of transferred packets and 35% reduction of the transferred data. By application of EAP header compaction, it has been possible to achieve up to 80% smaller EAP header. That comprises further reduction of transferred data for 3.84% for the EAP-TEPANOM method and 10% for the EAP-TLS-ECDSA based methods. The results have placed the EAP-TEPANOM method as one of the most lightweight EAP methods from ones that have been tested throughout this research, making it feasible for large scale deployments scenarios of IoT. |
url |
http://dx.doi.org/10.1155/2015/506284 |
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