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ArMor: A Data Analytics Scheme to identify malicious behaviors on Blockchain-based Smart Grid System

机译:ARMOR:数据分析方案,用于识别基于区块链的智能电网系统的恶意行为

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The next-generation energy system, i.e., Smart Grid (SG), empowers the real-time transfer of information using advanced metering infrastructure (AMI) and smart meter (SM) between end-consumers and grid. It accelerates various services such as automatic meter reading, time-of-use (TOU) pricing, demand-response management, and many more. Though it has growing security and privacy concerns and the detection of malicious activity is a critical security task that sacrifices the overall Quality-of-Service (QoS) of SG and Quality-of-Experience (QoE) for customers. To address the aforementioned issues, we propose a data analytics Scheme ArMor for malicious activity detection on the blockchain (BC)-based SG system. The ArMor detects data integrity issues in real-time like false data injection attack and SM failure. Here, we proposed a unique ARIMA-based malicious activity detection model and classified the customer. Then, we proposed a Smart Contract (SC)-based incentive mechanism for utility providers handling the malicious activity at their end. It prevents the entry of malicious data into the SG system as transactional data once stored in BC, it is secured using SC. The obtained results are compared against parameters like prediction accuracy, latency, and data storage cost compared to the state-of-the-art approaches to designate the efficacy of the proposed scheme.
机译:下一代能量系统,即智能电网(SG),赋予了使用先进的计量基础设施(AMI)和智能电表(SM)在最终消费者和网格之间进行信息的实时传输。它加速了各种服务,如自动抄表,使用时间(TOU)定价,需求 - 响应管理等等。虽然它具有不断增长的安全性和隐私问题,但恶意活动的检测是一项关键的安全任务,牺牲了SG的整体服务质量(QoS)和客户质量(QoE)。为了解决上述问题,我们提出了一种数据分析方案,用于基于区块链(BC)的SG系统上的恶意活动检测。 ARMOR在实时检测数据完整性问题,如虚假数据注入攻击和SM失败。在这里,我们提出了一个独特的基于Arima的恶意活动检测模型,并分类了客户。然后,我们提出了一项智能合同(SC),用于在其结束时处理恶意活动的公用事业提供者的激励机制。它可以防止恶意数据输入SG系统作为在BC中存储后的事务数据,它使用SC固定。与最先进的方法相比,将获得的结果与预测精度,延迟和数据存储成本相比进行比较,以指定所提出的方案的功效。

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