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An integrated testbed for locally monitoring SCADA systems in smart grids

机译:一个集成测试平台,用于智能电网的本地监控SCADA系统

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摘要

Abstract A testbed for evaluating if and how process-aware monitoring may increase the security of decentralized SCADA networks in power grids is presented. The testbed builds on the co-simulation framework Mosaik, and co-simulates in an integrated way, the power distribution network on different voltage levels, as well as the control network (Modbus/TCP). The existing simulators were extended to allow topology changes, and a controller (RTU) simulator connected to a SCADA server enabling remote control was implemented. Using the developed testbed, a recently proposed local monitoring approach was investigated. The results show that for so-called interlocks the proposed monitoring approach prevents the execution of 33.3% of the commands, that would result in an unsafe state of the power distribution grid. Furthermore, it is shown that unsafe transformer tap positions can also be avoided. To illustrate the relevance and importance of the proposed testbed, a detailed comparison of related work on process-aware intrusion detection approaches and testbeds combining (parts of) the control network and the power grid is provided.
机译:摘要介绍了用于评估进程感知监测的测试平台可能会增加电网中分散的SCADA网络的安全性。测试平台在共模框架MOSAIK上构建,并以综合方式共模,配电网络在不同电压电平,以及控制网络(MODBUS / TCP)。扩展了现有的模拟器以允许拓扑更改,并实现了连接到启用遥控器的SCADA服务器的控制器(RTU)模拟器。使用开发的试验台,研究了最近提出的局部监测方法。结果表明,对于所谓的互锁,所提出的监测方法可以防止执行33.3%的命令,这将导致配电网格的不安全状态。此外,示出了也可以避免不安全的变压器抽头位置。为了说明所提出的测试平台的相关性和重要性,提供了对过程感知入侵检测方法的详细比较和组合(部分)控制网络和电网的测试平台。

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