[1] WANG X, MAHULEA C, SILVA M. Diagnosis of Time Petri Nets Using Fault Diagnosis Graph [J]. IEEE Transactions on Automatic Control, 2015, 60(9): 2321-2335.
[2] BASILE F, CABASINO M P, SEATSU C. State Estimation and Fault Diagnosis of Labeled Time Petri Net Systems with Unobservable Transitions [J]. IEEE Transactions on Automatic Control, 2015, 60(4): 997-1009.
[3] GAO Z, DING S X, CECATI C. Real-time Fault Diagnosis and Fault-tolerant Control [J]. IEEE Transactions on Industrial Electronics, 2015, 62(6): 3752-3756.
[4] ROZENBERG G, THIAGARAJAN P. Petri Nets: Basic Notions, Structure, Behaviour [C]//Lecture Notes in Computer Science: 224. Berlin: Springer Verlag, 1986: 585-668.
[5] HAAR S. Clusters, Confusion and Unfoldings [J]. Fundamenta Informaticae, 2001, 47(3/4): 259-270.
[6] AALST W, HEE K. Workflow Management: Models, Methods, and Systems [M]. Cambridge: MIT Press, 2004.
[7] KATOEN J P. GSPNs Revisited: Simple Semantics and New Analysis Algorithms [C]//Proceedings of the International Conference on Application of Concurrency to System Design. Piscataway: IEEE, 2012: 6-11.
[8] MARR C. Capturing Conflict and Confusion in CSP [C]//Lecture Notes in Computer Science: 4591. Berlin: Springer Verlag, 2007: 413-438.
[9] CHEN X L, LI Z W, AL-AHMARI A M, et al. Confusion Diagnosis and Control of Discrete Event System Using Synchronized Petri Nets [J]. Asian Journal of Control, 2013, 15(6): 1736-1751.
[10] 陈晓亮, 蒋忠远, 叶剑虹. 工作流网的混或检测和预防策略[J]. 西安电子科技大学学报, 2015, 42(2): 87-94.
CHEN Xiaoliang, JIANG Zhongyuan, YE Jianhong. Confusion Detection and Prevention Policies for Work Flow Nets [J]. Journal of Xidian University, 2015, 42(2): 87-94.
[11] OLGA C, ALOIS F, HOON H. Reachability Test in Petri Nets [R]. Linz: Research Institute for Symbolic Computation, Johannes Kepler University, 1995. |