Data labeling for integrity in SCADA systems

Yanjun Zuo
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Abstract

Supervisory Control and Data Acquisition (SCADA) systems attain important data for critical infrastructure monitoring and control. The data is also used by various high level applications in automation engineering, decision support, operation planning and scheduling, and measurement and accounting. Due to the increasing security threats and system failures, SCADA data may be compromised, corrupted, or produced by malfunctioned devices/applications. Ensuring a high level of data integrity is critical for the operations of SCADA systems and the supported business functions. In this paper, a data labeling approach is proposed to ensure data integrity in SCADA systems. Essentially, a label records the component information of a data item as well as how the data is generated. This information is used to assess how damage to a component data could result in damage to compound data items and, more importantly, how to detect such damage and correct any affected data. For any compromised data that has been recovered, its label must be updated, called relabeling. We define relabeling strategies and communication models to propagate component updates to all the affected data items to ensure that they can be corrected, thus to maintain data integrity. To our best knowledge, our work is the first of its kind to specifically address data integrity issues in SCADA systems.
SCADA系统中完整性的数据标记
监控和数据采集(SCADA)系统为关键基础设施的监测和控制获取重要数据。这些数据还用于自动化工程、决策支持、操作计划和调度、测量和会计等各种高级应用。由于日益增加的安全威胁和系统故障,SCADA数据可能被破坏、损坏或由故障设备/应用程序产生。确保高水平的数据完整性对于SCADA系统的操作和支持的业务功能至关重要。为了保证SCADA系统的数据完整性,本文提出了一种数据标注方法。本质上,标签记录了数据项的组件信息以及数据是如何生成的。此信息用于评估组件数据的损坏如何导致复合数据项的损坏,更重要的是,如何检测此类损坏并纠正任何受影响的数据。对于已恢复的任何受损数据,必须更新其标签,称为重新标签。我们定义了重新标记策略和通信模型,将组件更新传播到所有受影响的数据项,以确保它们可以被纠正,从而维护数据完整性。据我们所知,我们的工作是第一个专门解决SCADA系统中数据完整性问题的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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