Title :
Dependence directed reasoning and learning in systems maintenance support
Author :
Dhar, Vasant ; Jarke, Matthias
Author_Institution :
Grad. Sch. of Bus. Adm., New York Univ., NY, USA
fDate :
2/1/1988 12:00:00 AM
Abstract :
The maintenance of large information systems involves continuous modifications in response to evolving business conditions or changing user requirements. Based on evidence from a case study, it is shown that the system maintenance activity would benefit greatly if the process knowledge reflecting the teleology of a design could be captured and used in order to reason about he consequences of changing conditions or requirements, A formalism called REMAP (representation and maintenance of process knowledge) that accumulates design process knowledge to manage systems evolution is described. To accomplish this, REMAP acquires and maintains dependencies among the design decisions made during a prototyping process, and is able to learn general domain-specific design rules on which such dependencies are based. This knowledge cannot only be applied to prototype refinement and systems maintenance, but can also support the reuse of existing design or software fragments to construct similar ones using analogical reasoning techniques
Keywords :
expert systems; software reliability; software tools; REMAP; dependency directed reasoning; domain-specific design rules; expert systems; information systems; process knowledge; prototyping; software fragments; software tools; systems maintenance support; teleology; user requirements; Computer errors; Error correction; Information analysis; Information systems; Knowledge management; Process design; Prototypes; Software design; Software maintenance; Software prototyping;
Journal_Title :
Software Engineering, IEEE Transactions on