DocumentCode :
3674079
Title :
Investigating cyber-physical attacks against IEC 61850 photovoltaic inverter installations
Author :
BooJoong Kang;Peter Maynard;Kieran McLaughlin;Sakir Sezer;Filip Andrén;Christian Seitl;Friederich Kupzog;Thomas Strasser
Author_Institution :
CSIT Centre for Secure Information Technologies, Queen´s University Belfast, Northern Ireland, United Kingdom
fYear :
2015
Firstpage :
1
Lastpage :
8
Abstract :
Cyber-attacks against Smart Grids have been found in the real world. Malware such as Havex and BlackEnergy have been found targeting industrial control systems (ICS) and researchers have shown that cyber-attacks can exploit vulnerabilities in widely used Smart Grid communication standards. This paper addresses a deep investigation of attacks against the manufacturing message specification of IEC 61850, which is expected to become one of the most widely used communication services in Smart Grids. We investigate how an attacker can build a custom tool to execute man-in-the-middle attacks, manipulate data, and affect the physical system. Attack capabilities are demonstrated based on NESCOR scenarios to make it possible to thoroughly test these scenarios in a real system. The goal is to help understand the potential for such attacks, and to aid the development and testing of cyber security solutions. An attack use-case is presented that focuses on the standard for power utility automation, IEC 61850 in the context of inverter-based distributed energy resource devices; especially photovoltaics (PV) generators.
Keywords :
"IEC Standards","IP networks","Inverters","Object oriented modeling","Protocols","Density estimation robust algorithm"
Publisher :
ieee
Conference_Titel :
Emerging Technologies & Factory Automation (ETFA), 2015 IEEE 20th Conference on
Type :
conf
DOI :
10.1109/ETFA.2015.7301457
Filename :
7301457
Link To Document :
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