Abstract
In the design and remote maintenance of district and city petition business docking platform, loose coupling environment of service composition flow, and autonomy of distributed resources can easily lead to failures of inter-process interaction, the platform running will gradually changes form trouble-free operation to operation with fault, so we design a docking platform with fault-isolation and fault-tolerance control based on services choreography and orchestration, and a remote monitoring system based on fault-diagnosis by fussy inference. More than two years’ operation and remote maintenance verify the effectiveness of the fault-tolerant control mode in the process of business docking services composition. Achieve the goal, that the improving of fault-recovery mechanism and the changing of business docking requirements won’t affect each other. Accordingly, it reduces the complexity of maintenancing services composition software, provides application value in business docking service mode for service computing and cloud computing, and SaaS-level monitoring and repair method.
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References
Li, D.Y.: Requirement Engineering—a Basic Study on Software Engineering of Complex Systems. China Basic Science (2), 4–8 (2009)
Li, D.Y., Zhang, H.S.: Internet Computation Beyond Turing Machines. Communication of the China Computer Federation(CCFF) 5(12), 8–16 (2009)
Zhang, L., Bai, X.Y., Wu, J.: Quality Outlook of Networked Software. Communication of the China Computer Federation(CCFF) 5(12), 36–43 (2009)
Zhong, D.H., Qi, Z.C.: Using Software Fault Tolerance to Increase the Reliability of Web Service Composition. Computer Engineering & Science 30(3), 28–31 (2008)
Zou, F., Gao, C.M.: Fault-tolerant Framework at Runtime of Web Service Composition. Computer Engineering 34(18), 89–92 (2008)
Huang, T., Wu, G.Q., Wei, J.: Runtime Monitoring Composite Web Services through Stateful Aspect Extension. Journal of Computer Science and Technology 24(2), 294–308 (2009)
Liu, A., Li, Q., Huang, L.S., Xiao, M.J.: Facts: a Framework for Fault-tolerant Composition of Transactional Web Services. IEEE Transactions on Services Computing 3(1), 46–59 (2010)
Wu, Y.G., Ren, J.L.: Monitoring and Recovery of System Security in Cloud Computing. Communication of the China Computer Federation(CCFF) 8(7), 8–14 (2012)
Papazoglou, M.P.: The Principle and Technology of Web Services. China Machine Press, Beijing (2010); translated by Gong, L., Zhang, Y.T.
Li, B., Huang, Y.F.: Demand Service Network Software Development. Communication of the China Computer Federation(CCFF) 5(12), 17–26 (2009)
Han, J.H., Luo, Y., Huang, J.P.: A study on the Scalable Flow Model of Web Services Choreography and Orchestration based on Dynamic Workflow. International Journal of Information and Communication Technology 5(3/4), 307–320 (2013)
Wang, L.J., Bai, X.Y., Chen, Y.N., Zhou, L.Z.: Data-driven Approach to Dynamic Reliability Evaluation of SOA Applications. Tsinghua University ( Science & Technology) 49(10), 1729–1732, 1736 (2009)
Liao, B.S., Li, S.J., Yao, Y., Gao, J.: Conceptual Model and Realization Methods of Autonomic Computing. Journal of Software 19(4), 779–802 (2008)
Hu, L.M., Cao, K.Q., Xu, H.J., Dong, X.M.: Fault Diagnosis and Control Technology Based on Support Vector Machine. National Defence Industry Press, Beijing (2011)
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Han, J., He, S., Li, H., Huang, J. (2014). Fault-Tolerant Control, Fault Diagnosis and Recovery in Runtime of Business Docking Service Composition Flow in the Cloud Environment. In: Huang, DS., Jo, KH., Wang, L. (eds) Intelligent Computing Methodologies. ICIC 2014. Lecture Notes in Computer Science(), vol 8589. Springer, Cham. https://doi.org/10.1007/978-3-319-09339-0_41
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DOI: https://doi.org/10.1007/978-3-319-09339-0_41
Publisher Name: Springer, Cham
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