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Design and Implementation of Full-Scale Industrial Control System Test Bed for Assessing Cyber-Security Defenses

机译:评估网络安全防御的大规模工业控制系统测试台的设计与实现

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In response to the increasing awareness of the Ethernet-based threat surface of industrial control systems (ICS), both the research and commercial communities are responding with ICS-specific security solutions. Unfortunately, many of the properties of ICS environments that contribute to the extent of this threat surface (e.g. age of devices, inability or unwillingness to patch, criticality of the system) similarly prevent the proper testing and evaluation of these security solutions. Production environments are often too fragile to introduce unvetted technology and most organizations lack test environments that are sufficiently consistent with production to yield actionable results. Cost and space requirements prevent the creation of mirrored physical environments leading many to look towards simulation or virtualization. Examples in literature provide various approaches to building ICS test beds, though most of these suffer from a lack of realism due to contrived scenarios, synthetic data and other compromises. In this paper, we provide a design methodology for building highly realistic ICS test beds for validating cybersecurity defenses. We then apply that methodology to the design and building of a specific test bed and describe the results and experimental use cases.
机译:为了响应人们对工业控制系统(ICS)的基于以太网的威胁面的日益增长的认识,研究和商业团体都在使用ICS专用的安全解决方案进行响应。不幸的是,ICS环境的许多特性都可能导致这种威胁面的扩大(例如,设备的使用年限,无法或不愿意打补丁,系统的严重性)类似地阻碍了对这些安全解决方案的正确测试和评估。生产环境通常过于脆弱,无法引入未经审查的技术,并且大多数组织缺乏与生产足够一致以产生可操作结果的测试环境。成本和空间要求阻止了镜像物理环境的创建,导致许多人将目光投向了仿真或虚拟化。文献中的示例提供了构建ICS测试平台的各种方法,尽管由于人为设计的场景,综合数据和其他折衷因素,大多数此类方法都缺乏现实性。在本文中,我们提供了一种用于构建高度现实的ICS测试平台以验证网络安全防御的设计方法。然后,我们将该方法应用于特定测试床的设计和构建,并描述结果和实验用例。

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