Dynamic Access Control Model for Security Client Services in Smart Grid

In the next-generation intelligent power grid, known as the smart grid, various objects can access systems in several network environments, and, accordingly, access control security becomes critical. Thus, to provide users with secure services in the smart grid, a new access control security model i...

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Main Authors: Sang-Soo Yeo, Si-Jung Kim, Do-Eun Cho
Format: Article
Language:English
Published: SAGE Publishing 2014-06-01
Series:International Journal of Distributed Sensor Networks
Online Access:https://doi.org/10.1155/2014/181760
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spelling doaj-c72fa8a8ff494affa3b05eb6269173c62020-11-25T03:29:31ZengSAGE PublishingInternational Journal of Distributed Sensor Networks1550-14772014-06-011010.1155/2014/181760181760Dynamic Access Control Model for Security Client Services in Smart GridSang-Soo Yeo0Si-Jung Kim1Do-Eun Cho2 Division of Convergence Computer & Media, Mokwon University, Daejeon 302-729, Republic of Korea College of General Education, Hannam University, Daejeon 306-791, Republic of Korea Innovation Center for Engineering Education, Mokwon University, Daejeon 302-729, Republic of KoreaIn the next-generation intelligent power grid, known as the smart grid, various objects can access systems in several network environments, and, accordingly, access control security becomes critical. Thus, to provide users with secure services in the smart grid, a new access control security model is needed. This paper proposes a dynamic access model for secure user services in the smart grid environment. The proposed model analyzes the user's various access contexts and chooses an appropriate context type among the predefined context types. And then it applies the context-based user security policy to allow the user's access to services dynamically. Therefore, it provides stronger security services by permitting context information-applied security services and flexible access control in various network environments. It is expected that this study will be used to solve important access control issues when establishing the smart grid.https://doi.org/10.1155/2014/181760
collection DOAJ
language English
format Article
sources DOAJ
author Sang-Soo Yeo
Si-Jung Kim
Do-Eun Cho
spellingShingle Sang-Soo Yeo
Si-Jung Kim
Do-Eun Cho
Dynamic Access Control Model for Security Client Services in Smart Grid
International Journal of Distributed Sensor Networks
author_facet Sang-Soo Yeo
Si-Jung Kim
Do-Eun Cho
author_sort Sang-Soo Yeo
title Dynamic Access Control Model for Security Client Services in Smart Grid
title_short Dynamic Access Control Model for Security Client Services in Smart Grid
title_full Dynamic Access Control Model for Security Client Services in Smart Grid
title_fullStr Dynamic Access Control Model for Security Client Services in Smart Grid
title_full_unstemmed Dynamic Access Control Model for Security Client Services in Smart Grid
title_sort dynamic access control model for security client services in smart grid
publisher SAGE Publishing
series International Journal of Distributed Sensor Networks
issn 1550-1477
publishDate 2014-06-01
description In the next-generation intelligent power grid, known as the smart grid, various objects can access systems in several network environments, and, accordingly, access control security becomes critical. Thus, to provide users with secure services in the smart grid, a new access control security model is needed. This paper proposes a dynamic access model for secure user services in the smart grid environment. The proposed model analyzes the user's various access contexts and chooses an appropriate context type among the predefined context types. And then it applies the context-based user security policy to allow the user's access to services dynamically. Therefore, it provides stronger security services by permitting context information-applied security services and flexible access control in various network environments. It is expected that this study will be used to solve important access control issues when establishing the smart grid.
url https://doi.org/10.1155/2014/181760
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