A comparison of fault trees and the Dynamic Flowgraph Methodology for the analysis of FPGA-based safety systems part 2: Theoretical investigations

Author:

McNelles Phillip,Renganathan Guna,Zeng Zhao Chang,Chirila Marius,Lu Lixuan

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Safety, Risk, Reliability and Quality

Reference75 articles.

1. Ranta, J., 2012. “The current state of FPGA technology in the nuclear domain,” Vuorimiehentie, Finland, VTT Technical Research.

2. Guidelines on the use of field programmable gate arrays (FPGAs) in nuclear power plant I&C systems;Naser,2009

3. Recommended approaches and design criteria for application of field programmable gate arrays in nuclear plant instrumentation and control;Naser,2011

4. A review of the current state of FPGA systems in nuclear instrumentation and control;McNelles,2013

5. A comparison of fault trees and the dynamic flowgraph methodology for the analysis of FPGA-based safety systems part 1: reactor trip logic loop reliability analysis;McNelles;Reliab Eng Syst Safety,2016

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2. Analysis of Occupational Health and Safety Risks in Beekeeping with FMEA Method;Sakarya University Journal of Science;2023-08-25

3. Integration frameworks and intelligent research in dynamic fault tree: A comprehensive review and future perspectives;Quality and Reliability Engineering International;2023-06

4. A review on the realization methods of dynamic fault tree;Quality and Reliability Engineering International;2022-06-27

5. Implementation of a built-in self-test for nuclear power plant FPGA-based safety-critical control systems;Annals of Nuclear Energy;2022-01

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