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  1. SEMAT Workshop on a General Theory of Software Engineering (GTSE).
  2. 2015 IEEE/ACM 4th SEMAT Workshop on a General Theory of Software Engineering
  3. Towards a Design-Theoretic Characterisation of Software Development Process Models
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2015 IEEE/ACM 4th SEMAT Workshop on a General Theory of Software Engineering
Title Page iii
Copyright Page
Table of Contents
Message from the Chairs
Committees
Sponsors and Supporters
General Theories of Software Engineering (GTSE): Key Criteria and an Example
Towards a Design-Theoretic Characterisation of Software Development Process Models
Exploring Theory of Cognition for General Theory of Software Engineering
An Approximate Theory for Value Sensitivity
A Theory of Software Complexity
Essence-Based, Goal-Driven Adaptive Software Engineering
A Theory about the Structure of GTSEs
The Unending Quest for Valid, Useful Software Engineering Theories
Author Index
Publisher's Information
2013 2nd SEMAT Workshop on a General Theory of Software Engineering (GTSE)

Towards a Design-Theoretic Characterisation of Software Development Process Models

Content Provider IEEE Xplore Digital Library
Author Hall, J.G. Rapanotti, L.
Copyright Year 2015
Description Author affiliation: Dept. of Comput. & Commun., Open Univ., Milton Keynes, UK (Hall, J.G.; Rapanotti, L.)
Abstract Context: Effective assessment, comparison, selection and adaptation of software development processes remain an acute problem in Software Engineering practice. The quest for a unified theory which might serve this purpose is ongoing. Objective: To take a first step towards such a theory, with focus on characterising and comparing features of software development process models. Method: We consider a theory of design as problem solving and investigate how it can be applied to characterise and explicate specific process features in well known process models from the literature. The intention is to characterise emerging trade-offs between resource expenditure and risk mitigation, which result from the interplay between process efforts into problem and solution exploration vs. stakeholder validation. The analysis, at this point performed, is purely qualitative, and the treatment of resource expenditure and risk quite abstract. Results: We provide an initial characterisation and comparison of features found in a wide range of process models from the literature, within a design theoretic framework using a single building block -- the Problem Oriented Engineering (POE) Process Pattern -- that allows the characterisation of information flow, the relationship between actors, resource usage and developmental risk. Conclusions: The initial characterisation identifies repeated structure in diverse processes, which allows basic process comparison across models. The interpretations are modular, allowing the possibility of relationships between different process models to be explored. As such, the theory allows for a unified means to characterise and compare systematically key features of different process models. In being of an exploratory nature, the work has a number of limitations, which should be addressed by further research.
Starting Page 3
Ending Page 14
File Size 1101691
Page Count 12
File Format PDF
ISBN 9781467370523
DOI 10.1109/GTSE.2015.8
Language English
Publisher Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Publisher Date 2015-05-18
Publisher Place Italy
Access Restriction Subscribed
Rights Holder Institute of Electrical and Electronics Engineers, Inc. (IEEE)
Subject Keyword Problem Orientation Adaptation models Computational modeling Software Engineering Software Encoding Engineering Design Problem-solving Process Models Meteorology Software engineering
Content Type Text
Resource Type Article
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