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Flexible hardware-in-the-loop testbed for cyber physical power system simulation
by
Ni, Ming
, Li, Manli
, Zhao, Lili
, Tong, Heqin
in
automation voltage control
/ Communication
/ communication bit error
/ communication co-simulator systems
/ communication network
/ Communications equipment
/ Communications networks
/ Communications systems
/ computer network security
/ Control equipment
/ Control stability
/ Control systems
/ cyber physical power system simulation
/ cyber-attack
/ Cyber-physical systems
/ Digital transmission
/ Electricity distribution
/ Error analysis
/ false data injection attack
/ flexible hardware-in-the-loop testbed
/ Hardware
/ hardware-in-the loop simulation
/ information system
/ nonreal-time synchronisation mechanism
/ power engineering computing
/ power system security
/ power system simulation
/ power system stability
/ Research Article
/ Simulation
/ Simulators
/ smart power grids
/ Software
/ Stability
/ stability control equipment
/ stability control system
/ synchronisation
/ Systems stability
/ Test stands
/ Time synchronization
/ voltage control
2019
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Flexible hardware-in-the-loop testbed for cyber physical power system simulation
by
Ni, Ming
, Li, Manli
, Zhao, Lili
, Tong, Heqin
in
automation voltage control
/ Communication
/ communication bit error
/ communication co-simulator systems
/ communication network
/ Communications equipment
/ Communications networks
/ Communications systems
/ computer network security
/ Control equipment
/ Control stability
/ Control systems
/ cyber physical power system simulation
/ cyber-attack
/ Cyber-physical systems
/ Digital transmission
/ Electricity distribution
/ Error analysis
/ false data injection attack
/ flexible hardware-in-the-loop testbed
/ Hardware
/ hardware-in-the loop simulation
/ information system
/ nonreal-time synchronisation mechanism
/ power engineering computing
/ power system security
/ power system simulation
/ power system stability
/ Research Article
/ Simulation
/ Simulators
/ smart power grids
/ Software
/ Stability
/ stability control equipment
/ stability control system
/ synchronisation
/ Systems stability
/ Test stands
/ Time synchronization
/ voltage control
2019
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Flexible hardware-in-the-loop testbed for cyber physical power system simulation
by
Ni, Ming
, Li, Manli
, Zhao, Lili
, Tong, Heqin
in
automation voltage control
/ Communication
/ communication bit error
/ communication co-simulator systems
/ communication network
/ Communications equipment
/ Communications networks
/ Communications systems
/ computer network security
/ Control equipment
/ Control stability
/ Control systems
/ cyber physical power system simulation
/ cyber-attack
/ Cyber-physical systems
/ Digital transmission
/ Electricity distribution
/ Error analysis
/ false data injection attack
/ flexible hardware-in-the-loop testbed
/ Hardware
/ hardware-in-the loop simulation
/ information system
/ nonreal-time synchronisation mechanism
/ power engineering computing
/ power system security
/ power system simulation
/ power system stability
/ Research Article
/ Simulation
/ Simulators
/ smart power grids
/ Software
/ Stability
/ stability control equipment
/ stability control system
/ synchronisation
/ Systems stability
/ Test stands
/ Time synchronization
/ voltage control
2019
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Flexible hardware-in-the-loop testbed for cyber physical power system simulation
Journal Article
Flexible hardware-in-the-loop testbed for cyber physical power system simulation
2019
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Overview
Nowadays, the power system is evolving into a complex cyber physical system with the closely merged physical system, information system, and communication network. It is critical to understand the connections between the power and cyber systems, and the potential impact of cyber vulnerability. In this study, a flexible hardware-in-the-loop (HIL) testbed is proposed for studying the cyber physical power system. By using the flexible interface, various co-simulation systems for different purposes are generated. Based on this testbed, three sample co-simulators are built as proofs. First, a HIL power and communication co-simulator with non-real-time synchronisation mechanism is introduced, and a case of false data injection attack on automation voltage control is studied. Then, a real-time power and communication HIL co-simulator is introduced, and a case considering the impact of communication bit error on the stability control system is simulated to demonstrate the performance of stability control equipment. Finally, another co-simulator for simulating the actual cyber-attack on the stability control system is introduced, and a case of a man-in-the-middle attack on the data link is simulated to demonstrate the impact of cyber-attack on the stability control system.
Publisher
The Institution of Engineering and Technology,John Wiley & Sons, Inc,Wiley
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