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ABSI: An Adaptive Binary Splitting Algorithm for Malicious Meter Inspection in Smart Grid

机译:ABSI:用于智能电网中恶意电表检查的自适应二进制拆分算法

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摘要

Electricity theft is a widespread problem that causes tremendous economic losses for all utility companies around the globe. As many countries struggle to update their antique power systems to emerging smart grids, more and more smart meters are deployed throughout the world. Compared with analog meters which can be tampered with by only physical attacks, smart meters can be manipulated by malicious users with both physical and cyber-attacks for the purpose of stealing electricity. Thus, electricity theft will become even more serious in a smart grid than in a traditional power system if utility companies do not implement efficient solutions. The goal of this paper is to identify all malicious users in a neighborhood area in a smart grid within the shortest detection time. We propose an adaptive binary splitting inspection (ABSI) algorithm which adopts a group testing method to locate the malicious users. There are two considered inspection strategies in this paper: a scanning method in which users will be inspected individually, and a binary search method by which a specific number of users will be examined as a whole. During the inspection process of our proposed scheme, the inspection strategy as well as the number of users in the groups to be inspected are adaptively adjusted. Simulation results show that the proposed ABSI algorithm outperforms existing methods.
机译:电力盗窃是一个普遍的问题,给全球所有公用事业公司造成巨大的经济损失。随着许多国家努力将其古董电源系统更新为新兴的智能电网,全世界越来越多地部署了智能电表。与只能通过物理攻击进行篡改的模拟电表相比,恶意电表可以通过物理和网络攻击来操纵智能电表,以窃取电力。因此,如果公用事业公司不执行有效的解决方案,与传统的电力系统相比,智能电网中的盗电将变得更加严重。本文的目的是在最短的检测时间内识别出智能电网附近区域中的所有恶意用户。我们提出了一种自适应的二进制拆分检查(ABSI)算法,该算法采用组测试方法来定位恶意用户。本文中有两种考虑的检查策略:一种扫描方法,在该方法中,将分别检查用户;二元搜索方法,在该方法中,将检查特定数量的用户整体。在我们提出的方案的检查过程中,将对检查策略以及要检查的组中的用户数量进行自适应调整。仿真结果表明,所提出的ABSI算法优于现有方法。

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