[1] |
Izadi I, Shah S L, Shook D S, et al. A framework for optimal design of alarm systems//Proceedings of the 7th IFAC Symposium on Fault Detection, Supervision and Safety of Technical Processes[C]. Barcelona, Spain: Chemical Institute of Spain, 2009: 651-656
|
[2] |
Nishiguchi J, Takai T. IPL2 and 3 performance improvement method for process safety using event correlation analysis [J]. Computers & Chemical Engineering, 2010, 34(12): 2007-2013
|
[3] |
Andow P K. Real-time analysis of process plant alarms using a mini-computer [J]. Computers & Chemical Engineering, 1980, 4(3): 143-155
|
[4] |
Higuchi F, Yamamoto I, Takai T, et al. Use of event correlation analysis to reduce number of alarms//10th International Symposium on Process Systems Engineering[C]. 2009: 1521-1526
|
[5] |
Xu J, Wang J, Izadi I, et al. Performance assessment and design for univariate alarm systems based on FAR, MAR, and AAD [J]. IEEE Transactions on Automation Science and Engineering, 2012, 9(2): 296-307
|
[6] |
Hamaguchi T, Takeda K, Noda M, et al. A method of designing plant alarm systems with hierarchical cause-effect model//11th International Symposium on Process Systems Engineering[C]. 2012: 265-269
|
[7] |
Liu Heng(刘恒), Liu Zhenjuan(刘振娟), Li Hongguang(李宏光). A data-driven approach to chemical process alarm threshold optimization [J]. CIESC Journal(化工学报), 2012, 63(9): 2733-2738
|
[8] |
Wang Feng(王峰), Li Hongguang(李宏光), Zang Hao(臧灏). Process alarm prognosis based on Logistic and ARMA models [J]. CIESC Journal(化工学报), 2012, 63(9): 2941-2947
|
[9] |
Modarres M, Cadman T. A method of alarm system analysis for process plants [J]. Computers & Chemical Engineering, 1986, 10(6): 557-565
|
[10] |
Kondaveeti S R, Izadi I, Shah S L, et al. Graphical tools for routine assessment of industrial alarm systems [J]. Computers & Chemical Engineering, 2012, 46: 39-47
|
[11] |
Liu X, Noda M, Nishitani H. Evaluation of plant alarm systems by behavior simulation using a virtual subject [J]. Computers & Chemical Engineering, 2010, 34(3): 374-386
|
[12] |
Grosdidier P, Connor P, et al. A path forward for DCS alarm management [J]. Hydrocarbon Processing, 2003, 82(11): 59-64
|
[13] |
Adnan N A, Cheng Y, Izadi I, et al. Study of generalized delay-timers in alarm configuration [J]. Journal of Process Control, 2013, 23(3): 382-395
|
[14] |
Adhitya A, Cheng S F, Lee Z, et al. Quantifying the effectiveness of an alarm management system through human factors studies [J]. Computers & Chemical Engineering, 2014, 67: 1-12
|
[15] |
Zhu J, Shu Y, Zhao J, et al. A dynamic alarm management strategy for chemical process transitions [J]. Journal of Loss Prevention in the Process Industries, 2013, 21: 1-12
|
[16] |
Yang F, Shah S L, Xiao D. Correlation analysis of alarm data and alarm limit design for industrial processes//American Control Conference (ACC) [C]. Baltimore, American, 2010: 5850-5855
|
[17] |
Yang F, Shah S L, Xiao D. Signed directed graph based modeling and its validation from process knowledge and process data [J]. Int. J. Appl. Math. Comput., 2012, 22(1): 41-53
|
[18] |
Yang F, Shah S L, Xiao D, et al. Improved correlation analysis and visualization of industrial alarm data [J]. ISA Transactions, 2012, 51(4): 499-506
|
[19] |
Wang J, Chen T. An online method to remove chattering and repeating alarms based on alarm durations and intervals [J]. Computers & Chemical Engineering, 2014, 67: 43-52
|
[20] |
Hollifield B R, Habibi E. Alarm Management: A Comprehensive Guide [M]. 2nd ed. International Society of Automation, 2010
|
[21] |
Zang H, Li H. Optimization of process alarm thresholds: a multidimensional kernel density estimation approach [J]. Process Safety Progress, 2014, 33(3): 292-298
|