VSCADA: A reconfigurable virtual SCADA test-bed for simulating power utility control center operations

Complex large-scale cyber-physical systems, such as electric power grids, oil & gas pipeline systems, transportation systems, etc. are critical infrastructures that provide essential services for the entire nation. In order to improve systems' security and resilience, researchers have developed many Supervisory Control and Data Acquisition (SCADA) test beds for testing the compatibility of devices, analyzed the potential cyber threats/vulnerabilities, and trained practitioners to operate and protect these critical systems. In this paper, we describe a new test bed architecture for modeling and simulating power system related research. Since the proposed test bed is purely software defined and the communication is emulated, its functionality is versatile. It is able to reconfigure virtual systems for different real control/monitoring scenarios. The unified architecture can seamlessly integrate various kinds of system-level power system simulators (real-time/non real-time) with the infrastructure being controlled or monitored with multiple communication protocols. We depict the design methodology in detail. To validate the usability of the test bed, we implement an IEEE 39-bus power system case study with a power flow analysis and dynamics simulation mimicking a real power utility infrastructure. We also include a cascading failure example to show how system simulators such as Power System Simulator for Engineering (PSS/E), etc. can seamlessly interact with the proposed virtual test bed.

[1]  Jeffery E. Dagle,et al.  Metrics for the National SCADA Test Bed Program , 2008 .

[2]  Bradley Reaves,et al.  An open virtual testbed for industrial control system security research , 2012, International Journal of Information Security.

[3]  T.J. Overbye,et al.  SCADA Cyber Security Testbed Development , 2006, 2006 38th North American Power Symposium.

[4]  James Moyne,et al.  Performance evaluation of control networks: Ethernet, ControlNet, and DeviceNet , 2001 .

[5]  Renjie Huang,et al.  Research on OPC UA security , 2010, 2010 5th IEEE Conference on Industrial Electronics and Applications.

[6]  David M. Nicol,et al.  The Virtual Power System Testbed and Inter-Testbed Integration , 2009, CSET.

[7]  Gabor Karsai,et al.  A testbed for secure and robust SCADA systems , 2008, SIGBED.

[8]  Chen-Ching Liu,et al.  An intrusion and defense testbed in a cyber-power system environment , 2011, 2011 IEEE Power and Energy Society General Meeting.

[9]  Neville R. Watson,et al.  Power System Analysis Software , 1997 .

[10]  Ronald L. Krutz Securing SCADA systems , 2005 .

[11]  Yi Deng,et al.  Co-simulating power systems and communication network for accurate modeling and simulation of PMU based wide area measurement systems using a global event scheduling technique , 2013, 2013 Workshop on Modeling and Simulation of Cyber-Physical Energy Systems (MSCPES).