Title
Applying F(I)MEA-technique for SCADA-Based Industrial Control Systems Dependability Assessment and Ensuring
Abstract
Dependability and security analysis of the industrial control computer-based systems (ICS) is an open problem. ICS is a complex system that as a rule consists of two levels – supervisory control and data acquisition (SCADA) and programmable logic controllers (PLC) and has vulnerabilities on both levels. This paper presents results of the SCADA-based ICS dependability and security analysis using a modification of standardized FMEA (Failure Modes and Effects Analysis)-technique. The technique mentioned takes into account possible intrusions and is called F(I)MEA (Failure (Intrusion) Modes and Effects Analysis). F(I)MEA-technique is applied for determining the weakest parts of ICS and the required means of fault prevention, fault detection and fault-tolerance ensuring. An example of F(I)MEA-technique applying for SCADA vulnerabilities analysis is provided. The solutions of SCADA-based ICS dependability improvement are proposed.
Year
DOI
Venue
2008
10.1109/DepCoS-RELCOMEX.2008.23
DepCoS-RELCOMEX
Keywords
Field
DocType
scada-based ics dependability,effects analysis,failure modes,fault prevention,security analysis,supervisory control,scada-based industrial control systems,scada-based ics dependability improvement,industrial control,scada vulnerabilities analysis,fault detection,dependability assessment,industrial control system,fault tolerance,workstations,fault tolerant,security,fmea,complex system,programmable controllers,programmable logic controller,failure mode and effect analysis,scada,programmable logic controllers,vulnerability analysis,supervisory control and data acquisition,failure analysis
Failure mode and effects analysis,Dependability,Fault detection and isolation,Industrial control system,Fault tolerance,Security analysis,SCADA,Programmable logic controller,Engineering,Reliability engineering
Conference
Citations 
PageRank 
References 
6
0.89
4
Authors
3
Name
Order
Citations
PageRank
Eugene Babeshko161.22
Vyacheslav Kharchenko211325.59
Anatoliy Gorbenko39112.13