Authentication of Smart Grid

IF 1.8 Q3 COMPUTER SCIENCE, INFORMATION SYSTEMS Cryptography Pub Date : 2020-01-01 DOI:10.4018/978-1-7998-1763-5.ch015
Melesio Calderon Munoz, M. Moh
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Abstract

The electrical power grid forms the functional foundation of our modern societies, but in the near future our aging electrical infrastructure will not be able to keep pace with our demands. As a result, nations worldwide have started to convert their power grids into smart grids that will have improved communication and control systems. A smart grid will be better able to incorporate new forms of energy generation as well as be self-healing and more reliable. This paper investigates a threat to wireless communication networks from a fully realized quantum computer, and provides a means to avoid this problem in smart grid domains. We discuss and compare the security aspects, the complexities and the performance of authentication using public-key cryptography and using Merkel trees. As a result, we argue for the use of Merkle trees as opposed to public key encryption for authentication of devices in wireless mesh networks (WMN) used in smart grid applications.
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智能电网认证
电网构成了现代社会的功能基础,但在不久的将来,我们老化的电力基础设施将无法满足我们的需求。因此,世界各国已开始将其电网转变为智能电网,这将改善通信和控制系统。智能电网将能够更好地整合新形式的能源发电,并具有自我修复能力,更加可靠。本文研究了完全实现的量子计算机对无线通信网络的威胁,并提供了在智能电网领域避免这一问题的方法。我们讨论并比较了使用公钥加密和使用默克尔树进行身份验证的安全性、复杂性和性能。因此,我们主张使用默克尔树而不是公钥加密来对智能电网应用中使用的无线网状网络(WMN)中的设备进行身份验证。
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来源期刊
Cryptography
Cryptography Mathematics-Applied Mathematics
CiteScore
3.80
自引率
6.20%
发文量
53
审稿时长
11 weeks
期刊最新文献
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