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Vulnerability assessment and defense technology for smart home cybersecurity considering pricing cyberattacks

机译:考虑定价网络攻击的智能家居网络安全漏洞评估和防御技术

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Smart home, which controls the end use of the power grid, has become a critical component in the smart grid infrastructure. In a smart home system, the advanced metering infrastructure (AMI) is used to connect smart meters with the power system and the communication system of a smart grid. The electricity pricing information is transmitted from the utility to the local community, and then broadcast through wired or wireless networks to each smart meter within AMI. In this work, the vulnerability of the above process is assessed. Two closely related pricing cyberattacks which manipulate the guideline electricity prices received at smart meters are considered and they aim at reducing the expense of the cyberattacker and increasing the peak energy usage in the local community. A countermeasure technique which uses support vector regression and impact difference for detecting anomaly pricing is then proposed. These pricing cyberattacks explore the interdependance between the transmitted electricity pricing in the communication system and the energy load in the power system, which are the first such cyber-attacks in the smart home context. Our simulation results demonstrate that the pricing cyberattack can reduce the attacker's bill by 34.3% at the cost of the increase of others' bill by 7.9% on average. In addition, the pricing cyberattack can unbalance the energy load of the local power system as it increases the peak to average ratio by 35.7%. Furthermore, our simulation results show that the proposed countermeasure technique can effectively detect the electricity pricing manipulation.
机译:控制电网最终用途的智能家居已成为智能电网基础设施中的关键组件。在智能家居系统中,高级计量基础架构(AMI)用于将智能电表与智能电网的电力系统和通信系统连接。电价信息从公用事业部门传输到本地社区,然后通过有线或无线网络广播到AMI中的每个智能电表。在这项工作中,评估了上述过程的脆弱性。考虑了两个密切相关的定价网络攻击,它们操纵着智能电表接收的指导电价,目的是减少网络攻击者的费用并提高当地社区的峰值能源使用量。提出了一种基于支持向量回归和影响差异的异常价格检测对策技术。这些定价网络攻击探索了通信系统中传输的电价与电力系统中的能源负载之间的相互依赖关系,这是智能家居环境中的首批此类网络攻击。我们的模拟结果表明,定价网络攻击可以使攻击者的账单减少34.3%,而其他人的账单平均增加7.9%。此外,定价网络攻击还会使峰均比增加35.7%,从而使本地电力系统的能源负载失衡。此外,我们的仿真结果表明,所提出的对策技术可以有效地检测电价操纵。

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