A Metric for Quantitative Estimation of Production Process Resilience Based on the Skills and Knowledge of Production Plant Personnel in the Chemical Industry
Author:
Affiliation:
1. Industrial Management Engineering, Nagoya Institute of Technology
2. Department of Electronic Engineering, Cork Institute of Technology
Publisher
Society of Chemical Engineers, Japan
Subject
General Chemical Engineering,General Chemistry
Link
https://www.jstage.jst.go.jp/article/jcej/49/1/49_14we239/_pdf
Reference19 articles.
1. Azadeh, A., V. Salehi, B. Ashjari and M. Saberi; “Performance Evaluation of Integrated Resilience Engineering Factors by Data Envelopment Analysis: The Case of a Petrochemical Plant,” Process Saf. Environ. Prot., 92, 231–241 (2014a)
2. Azadeh, A., V. Salehi, M. Arvan and M. Dolatkhah; “Assessment of Resilience Engineering Factors in High-risk Environments by Fuzzy Cognitive Maps: A Petrochemical Plant,” Saf. Sci., 68, 99–107 (2014b)
3. Back, J. D.; Furniss, M. Hilderbrandt and A. Blandford; “Resilience Marker for Safer Systems and Organizations,” Proc. of Computer Safety, Reliability, and Security, pp. 99–112, Newcastle upon Tyne, U.K. (2008)
4. Bracco, F., T. Piccinno and G. Dorigatti; “Turning Variability into Emergent Safety: The Resilience Matrix for Providing Strong Responses to Weak Signals,” Proc. of 5th Symposium on Resilience Engineering, pp. 23–28, Soesterberg, the Netherlands (2013)
5. Comfort, L. K., Y. Sungu, D. Johnson and M. Dunn; “Complex Systems in Crisis: Anticipation and Resilience in Dynamic Environment,” J. Contingencies Crisis Manage., 9, 144–158 (2001)
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1. A Metric for Quantitative Estimation of Production Process Resilience Based on the Production Support System in the Chemical Industry;Journal of Chemical Engineering of Japan;2016
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