References
- S.H. Kim, K.M. Jung, S.U. Lee, H.C. Shin, C.H. Kim, Y.C. Seo, Y.G. Bae, Innovative robot technologies for nuclear power plant inspection and maintenance, in: ICONE22, Int. Conf. Nucl. Engr., July 7-11, 2014. Prague.
- R.R. Murphy, Disaster Robotics, The MIT Press, Cambridge, MA, 2014.
- B. Siciliano, O. Khatib (Eds.), Springer Handbook of Robotics, Springer-Verlag, Berlin, 2008.
- B.S. Dhillon, Robot Reliability and Safety, Springer-Verlag, New York, 1991.
- DARPA Robotics Challenge (DRC), [Internet]. 2015. Available from: www.darpa.mil/program/darpa-robotics-challenge. [Accessed June 23, 2017]
- Y. Choi, K.M. Jeong, I.S. Kim, Strategy to Enhance Applicability of the KAERI's Remote Response Technology, Trans Am Nucl Soc, San Antonio, TX, June 7-11, 2015.
- M. Modarres, What Every Engineer Should Know About Reliability and Risk Analysis, Marcel Dekker, New York, 1993.
- M. Modarres, I.S. Kim, Deterministic and probabilistic safety analysis, in: D.G. Cacuci (Ed.), Handbook of Nuclear Engineering, Springer Science, New York, 2010, pp. 1742-1812.
- Nuclear Energy Institute, B.5.b Phase 2 & 3 Submittal Guideline, NEI-06-12, Rev. 3, Nuclear Energy Institute, Washington, DC, 2009.
- Nuclear Energy Institute, Diverse and Flexible Coping Strategies (FLEX) Implementation Guide, NEI-12-06, Nuclear Energy Institute, Washington, DC, 2012.
- ASME/ANS RA-Sa-2009, Standard for Level 1/Large Early Release Frequency Probabilistic Risk Assessment for Nuclear Power Plant Applications, American Society of Mechanical Engineers, New York, 2009.
- U.S. Nuclear Regulatory Commission, State-of-the-Art Reactor Consequence Analyses (SOARCA) Report, NUREG-1935, U.S. Nuclear Regulatory Commission, Washington, DC, 2012.
- Institute of Nuclear Power Operations (INPO), Special Report on the Nuclear Accident at the Fukushima Daiichi Nuclear Power Station, INPO 11-1005, INPO, Atlanta (GA), 2011.
- Arizona Public Service Company, APS Overall Integrated Plan in Response to March 12, 2012 Commission Order Modifying Licenses with Regard to Requirements for Mitigation Strategies for Beyond-design-basis External Events, Arizona Public Service Company, Phoenix (AZ), February 28, 2013.
- J.A. Julius, J. Grobbelaar, K. Kohlhepp, Advancing human reliability analysis methods for external events with a focus on seismic, in: Probabilistic Safety Assessment and Management, PSAM12, June 22-27, 2014. Hawaii.
- U.S. Nuclear Regulatory Commission, Reevaluation of Station Blackout Risk at Nuclear Power Plants, Analysis of Loss of Power Events: 1986-2004, NUREG/CR-6890, U.S. Nuclear Regulatory Commission, Washington, DC, 2005.
- M.V.D. Borst, H. Schoonakker, An overview of PSA importance measures, Rel. Engr. Sys. Saf. 72 (2001) 241-245. https://doi.org/10.1016/S0951-8320(01)00007-2
- J.-E. Holmberg, U. Pulkkinen, T. Rosqvist, K. Simola, Decision Criteria in PSA Applications, VTT Automation, Finland, 2001.
- U.S. Nuclear Regulatory Commission, Systems Analysis Programs for Handson Integrated Reliability Evaluations (SAPHIRE) Version 8, NUREG/CR-7039, U.S. Nuclear Regulatory Commission, Washington, DC, 2011.
- U.S. Nuclear Regulatory Commission, Systems Analysis Programs for Hands-on Integrated Reliability Evaluations (SAPHIRE) Version 8, NUREG/CR-7039, U.S. Nuclear Regulatory Commission, Washington, DC, 2011.
Cited by
- Research Progress of Nuclear Emergency Response Robot vol.452, pp.None, 2018, https://doi.org/10.1088/1757-899x/452/4/042102
- Fuzzy Logic-Based Risk Assessment of a Parallel Robot for Elbow and Wrist Rehabilitation vol.17, pp.2, 2017, https://doi.org/10.3390/ijerph17020654
- Dynamic analysis of multi-functional maintenance platform based on Newton-Euler method and improved virtual work principle vol.52, pp.11, 2017, https://doi.org/10.1016/j.net.2020.04.017
- Robot application and occupational injuries: Are robots necessarily safer? vol.147, pp.None, 2017, https://doi.org/10.1016/j.ssci.2021.105623