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Authentication and Authorization Scheme for Various User-Roles and Devices in Smart Grid

机译:智能电网中各种用户角色和设备的认证授权方案

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摘要

The smart grid, as the next generation of the power grid, is characterized by employing many different types of intelligent devices, such as intelligent electronic devices located at substations, smart meters positioned in the home area network, and outdoor field equipment deployed in the fields. Also, there are various users in the smart grid network, including customers, operators, maintenance personnel, and etc., who use these devices for various purposes. Therefore, a secure and efficient mutual authentication and authorization scheme is needed in the smart grid to prevent various insider and outsider attacks on many different devices. In this paper, we propose an authentication and authorization scheme for mitigating outsider and insider threats in the smart grid by verifying the user authorization and performing the user authentication together whenever a user accesses the devices. The proposed scheme computes each user-role dynamically using an attribute-based access control and verifies the identity of user together with the device. Security and performance analysis show that the proposed scheme resists various insider as well as outsider attacks, and is more efficient in terms of communication and computation costs in comparison with the existing schemes. The correctness of the proposed scheme is also proved using BAN-Logic and Proverif.
机译:作为下一代电网,智能电网的特征在于采用了许多不同类型的智能设备,例如位于变电站的智能电子设备,位于家庭局域网中的智能电表以及部署在现场的室外现场设备。 。而且,智能电网网络中有各种用户,包括客户,操作员,维护人员等,这些用户将这些设备用于各种目的。因此,在智能电网中需要一种安全,有效的相互认证和授权方案,以防止对许多不同设备的各种内部和外部攻击。在本文中,我们提出了一种身份验证和授权方案,该方案可通过验证用户授权并在用户访问设备时一起执行用户身份验证来缓解智能电网中的外部和内部威胁。所提出的方案使用基于属性的访问控制来动态计算每个用户角色,并与设备一起验证用户的身份。安全性和性能分析表明,该方案能够抵抗各种内部和外部攻击,与现有方案相比,在通信和计算成本方面更为有效。还使用BAN-Logic和Proverif证明了所提方案的正确性。

著录项

  • 作者

    Saxena N.; Choi B.J.; Lu R.;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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