By Björn E. Nilsson (auth.), Anne Persson, Janis Stirna (eds.)
th CAiSE 2004 used to be the sixteen within the sequence of foreign meetings on complex info structures Engineering. within the 12 months 2004 the convention was once hosted through the school of computing device technological know-how and knowledge know-how, Riga Technical college, Latvia. because the past due Eighties, the CAiSE meetings have supplied a discussion board for the presentation and alternate of analysis effects and sensible reviews in the ?eld of data platforms Engineering. The convention subject of CAiSE 2004 used to be wisdom and version pushed info platforms Engineering for Networked agencies. glossy companies and IT structures are dealing with an ever extra advanced en- ronment characterised via openness, sort, and alter. agencies are - coming much less self-su?cient and more and more depending on company companions and different actors. those traits demand openness of industrial in addition to IT structures, i.e. the power to attach and interoperate with different structures. moreover, businesses are experiencing ever extra sort of their company, in all c- ceivable dimensions. The di?erent skills required via the staff are multiplying. within the comparable manner, the range in know-how is overwhelming with a large number of languages, systems, units, criteria, and items. additionally, enterprises have to deal with an atmosphere that's continually altering and the place lead instances, product lifestyles cycles, and accomplice relationships are shortening. ThedemandofhavingtoconstantlyadaptITtochangingtechnologiesandbu- ness practices has ended in the beginning of recent principles that could have a profound influence at the info platforms engineering practices in years yet to come, similar to autonomic computing, part and prone marketplaces and dynamically generated software.
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Additional info for Advanced Information Systems Engineering: 16th International Conference, CAiSE 2004, Riga, Latvia, June 7-11, 2004. Proceedings
Ingénierie des Systems d’ Information, Vol. 2, N° 6. 6. , Chudge, J. and Strens, R. (1994) The ORDIT Approach to Organisational Requirements, in ‘Requirements Engineering: Social and Technical Issues’, Academic Press, London, 87-106. 7. , Darimont, R. and Massonet, P. (1995) Goal-Directed Elaboration of Requirements for a Meeting Scheduler: Problems and Lessons Learnt, RE’95, IEEE Computer Society Press, 194-203. 8. K. and Mylopoulos, J. (1996) Using Goals, Rules and Methods to Support Reasoning in Business Process Reengineering, Intelligent Systems in Accounting, Finance and Management, Vol.
Suppose G is not an input goal. If holds, then this value must derive from the prerequisite values of some of the incoming relations of G. are exactly the conditions which must be verified to apply the corresponding relation axioms (2)-(7) and their dual ones in Figure 2. 3 Correctness and Completeness The following theorem states the correctness and completeness of the approach. Theorem 1. Let be a goal graph. Let be the input goals verifying condition (9). Let be the target goals which are assigned the values respectively.
J. (2000) Configurable business objects for building evolving enterprise models and applications, in Business Process Management – Models Techniques and Empirical Studies, Springer, 2000. 34. , Moreno, M. (1995) An approach for defining ways-of-working, Information System Journal 20(4), pp. 337-359. edu Abstract. Goal models have been used in Computer Science in order to represent software requirements, business objectives and design qualities. In previous work we have presented a formal framework for reasoning with goal models, in a qualitative or quantitative way, and we have introduced an algorithm for forward propagating values through goal models.
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