The impact of component modularity on design evolution
evidence from the software industry
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Author
Contributions
- Rusnak, John - Contributor
- Baldwin, Carliss Y. (Carliss Young) - Contributor
- Harvard Business School - Contributor
Publication
2007 - Harvard Business School, Boston, Massachusetts
Language
English
Word Count
9,000 words, Guess
Page Count
36 pages
Identifiers
- OCLC Control Number191879256
- Open LibraryOL48025817M
Description
Much academic work asserts a relationship between the design of a complex system and the manner in which this system evolves over time. In particular, designs which are modular in nature are argued to be more "evolvable," in that these designs facilitate making future adaptations, the nature of which do not have to be specified in advance. In essence, modularity creates "option value" with respect to new and improved designs, which is particularly important when a system must meet uncertain future demands. Despite the conceptual appeal of this research, empirical work exploring the relationship between modularity and evolution has had limited success. Three major challenges persist: first, it is difficult to measure modularity in a robust and repeatable fashion; second, modularity is a property of individual components, not systems as a whole, hence we must examine these dynamics at the microstructure level; and third, evolution is a temporal phenomenon, in that the conditions at time t affect the nature of the design at time t+1, hence exploring this phenomenon requires longitudinal data. In this paper, we tackle these challenges by analyzing the evolution of a successful commercial software product over its entire lifetime, comprising six major "releases."
Subjects
Series Statement
- Working paper / Harvard Business School -- 08-038
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