Environmental Engineering Reference
In-Depth Information
oriented assessment techniques. One of the main
challenges related to diversity approach is a fact
that multi-version I&C systems are still unique,
failures occurred very rarely and information about
failures is not enough representative.
Analysis of NUREG 7007-and CLB (GMB)-
based assessment techniques allows determining
advantages/disadvantages of these techniques,
possibilities of their joint applications and tool
support. It the chapter three-stages CLD-MAD-
RMD-technique for the assessment of multi-
version NPP I&C systems is proposed. This
technique has got an approbation in the analysis of
multi-channel FPGA-based I&C Systems based on
Radiy Platform and allows to decide the issue of
assessment in conditions of lack of the statistical
data about CCF.
Dubois, D., & Prade, H. (1980). Fuzzy Sets and
Systems: Theory and Application . New York:
Academic.
Duzhyi, V., Kharchenko, V., Starov, O., & Rusin,
D. (2010). Research Sports Programming Services
as Multi-version Projects. Radioelectronic and
Computer Systems , 47 , 29-35.
Gorbenko, A., Kharchenko, V., & Romanovsky,
A. (2009). Using Inherent Service Redundancy
and Diversity to Ensure Web Services Depend-
ability In Methods, Models and Tools for Fault
Tolerance, M. Butler, C. Jones, A. Romanovsky,
E. Troubitsyna (Eds.), pp. 324-341, LNCS 5454,
Springer.
Jonson, G. (2010). The INSAG Defense in Depth
Concept and D-in-D&D in I&C. Paper presented
at the meeting of the 7th ANS Topical Meeting on
NPIC-HMIT, Las Vegas, USA.
REFERENCES
Kharchenko, V. (1999). Multi-version Systems:
Models, Reliability, Design Technologies. The
10th ESREL Conference: Vol.1, pp. 73-77. Mu-
nich, Germany.
Avizienis, A., Laprie, J.-C., Randell, B., & Land-
wehr, C. (2004). Basic Concepts and Taxonomy of
Dependable and Secure Computing. IEEE Trans-
actions on Dependable and Secure Computing ,
1 , 11-33. doi:10.1109/TDSC.2004.2
Kharchenko, V. Siora O., Sklyar V. (2011). Multi-
Version FPGA-Based Nuclear Power Plant I&C
Systems: Evolution of Safety Ensuring, Nuclear
Power - Control, Reliability and Human Factors,
Dr. Pavel Tsvetkov (Ed.), InTech, from: http://
www.intechopen.com/books/nuclear-power-con-
trol-reliability-and-human-factors/multi-version-
fpga- based-nuclear-power-plant-i-c-systems-
evolution-of-safety-ensuring.
Bakhmach, E., Kharchenko, V., Siora, A., Sklyar,
V., & Tokarev, V. (2009). Advanced I&C Systems
for NPPS Based on FPGA Technology: European
Experience. Paper presented at the meeting of
the 17th International Conference on Nuclear
Engineering, Belgium.
Bobrek, M., Bouldin, D., Holkomb, D., et al.
(2009). Review guidelines for FPGAs in nuclear
power plants safety systems. NUREG/CR-7006
ORNL/TM-2009/020.
Kharchenko, V., Duzhyi, V., Sklyar, V., & Volkov-
iy, A. (2012). Safety Assessment of Multi-version
FPGA-based NPP I&C Systems: Theoretical and
Practical Issues. Paper presented at the meeting of
the 5th International Workshop on the Applica-
tions of FPGA in Nuclear Power Plants, Beijing.
Bukowsky, J., & Goble, W. (1994). An Extended
Beta Model to Quantize the Effects of Common
Cause Stressors. Paper presented at the meeting
of the ISAFECOMP, London.
Search WWH ::




Custom Search