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Tangible interactions in a digital age: Medium and graphic visualization in design journals

Published online by Cambridge University Press:  17 June 2009

Lora Oehlberg
Affiliation:
Department of Mechanical Engineering andBerkeley Institute of Design, University of California Berkeley, Berkeley, California, USA
Kimberly Lau
Affiliation:
Department of Mechanical Engineering andBerkeley Institute of Design, University of California Berkeley, Berkeley, California, USA
Alice Agogino
Affiliation:
Department of Mechanical Engineering andBerkeley Institute of Design, University of California Berkeley, Berkeley, California, USA

Abstract

Designers are interacting with an increasing number of digital tools in their design process; however, these are usually in addition to the traditional and ubiquitous paper-based design journals. This paper explores the medium of informal design information and its relationships with sketching behavior over three stages of the design process: preliminary investigation and user needs analyses, concept generation and development, and prototyping and testing. Our test bed consists of tangible, digital, and hybrid design journals collected from four semesters of UC Berkeley's graduate level, multidisciplinary course titled “Managing the New Product Development Process: Design Theory and Methods.” We developed protocols for two categories of analysis: one that codes for the media type of each journal and its content, and another one that characterizes the content within the journal. We found a trend toward hybrid digital–tangible journals for the engineering students over the 4-year period. These hybrid journals exhibited a higher degree of detail over advancing design stages, which has been shown to correlate with improved project performance. We also present several case studies of unusual design journals that illustrate the range of designers' interpretations of design journals as a medium. Based on this descriptive research, features for interactive hybrid tangible–digital design journals are recommended.

Type
Research Article
Copyright
Copyright © Cambridge University Press 2009

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References

REFERENCES

Bellotti, V., & Bly, S. (1996). Walking away from the desktop computer: distributed collaboration and mobility in a product design team. Proc. Computer Supported Cooperative Work, pp. 209218.Google Scholar
Bystrom, M., & Eisenstein, B. (2005). Practical Engineering Design. Boca Raton, FL: Taylor & Francis.Google Scholar
Chen, H.L., Cannon, D.M., Gabrio, J., & Leifer, L. (2005). Using wikis and weblogs to support reflective learning in an introductory engineering design course. Proc. 2005 American Society for Engineering Education Annual Conf. Exposition.Google Scholar
Ferguson, E. (1992). Engineering and the Mind's Eye. Cambridge, MA: MIT Press.Google Scholar
Gross, M., & Do, E. (1996). Demonstrating the electronic cocktail napkin: a paper-like interface for early design. Proc. Conf. Human Factors in Computing Systems, pp. 56.Google Scholar
Gross, M., Do, E., McCall, R., Citrin, W., Hamill, P., Warmack, A., & Kuczun, K. (1998). Collaboration and coordination in architectural design: approaches to computer mediated work. Automation in Construction 7, 465473.Google Scholar
Henderson, K. (1999). On Line and On Paper. Cambridge, MA: MIT Press.Google Scholar
Hong, J., Toye, G., & Leifer, L. (1995). Personal electronic notebook with sharing. Proc. 4th Workshop on Enabling Technologies: Infrastructure for Collaborative Enterprises (WET-ICE ’95), p. 88, April 20–22, 1995.Google Scholar
Hyman, B. (2003). Fundamentals of Engineering Design. Upper Saddle River, NJ: Prentice–Hall.Google Scholar
Kam, M., Wang, J., Iles, A.L., Tse, E., Chiu, J., Glaser, D., Tarshish, O., & Canny, J. (2005). Livenotes: a system for cooperative and augmented note-taking in lectures. Proc. ACM Conf. Human Factors in Computing Systems, pp. 531540.CrossRefGoogle Scholar
Klemmer, S., Newman, M., Farrell, R., Bilezikjian, M., & Landay, J. (2001). The designers’ outpost: a tangible interface for collaborative web site. Proc. 14th Annual ACM Symp. User Interface Software and Technology, pp. 110.CrossRefGoogle Scholar
Lakin, F., Wambaugh, J., Leifer, L., Cannon, D., & Sivard, C. (1989). The electronic design notebook: performing medium and processing medium. The Visual Computer 5 (4), 214226.CrossRefGoogle Scholar
Lee, B. (2006). From cognitive artifacts to social artifacts: the iDeas Design ecology. Proc. ACM Symp. User Interface Software and Technology, Conf. Supplement to UIST 2006.Google Scholar
Lin, X., Hmelo, C., Kinzer, C., & Sewles, T. (1999). Designing technology that supports reflection. Educational Technology Research and Development 47 (3), 4362.CrossRefGoogle Scholar
McAlpine, H., Hicks, B.J., Huet, G., & Culley, S.J. (2006). An investigation into the use and content of the engineer's logbook. Design Studies 27 (4), 481504.Google Scholar
McGown, A., Green, G., & Rodgers, P. (1998). Visible ideas: information patterns of conceptual sketch activity. Design Studies 19 (4), 431453.CrossRefGoogle Scholar
Schön, D. (1983). The Reflective Practitioner: How Professionals Think in Action. New York: Basic Books.Google Scholar
Sellen, A., & Harper, R.J. (2002). The Myth of the Paperless Office. Cambridge, MA: MIT Press.Google Scholar
Shah, J., Vargas-Hernandez, N., & Smith, S. (2003). Metrics for measuring ideation effectiveness. Design Studies 24 (2), 111134.Google Scholar
Song, S., & Agogino, A. (2004). Insights in designers' sketching activities in new product design teams. Proc. ASME Design Theory and Methods Conf., pp. 351360.Google Scholar
Stifelman, L., Arons, B., & Schmandt, C. (2001). The audio notebook: paper and pen interaction with structured speech. Proc. SIGCHI Conf. Human Factors in Computing Systems, pp. 182189.CrossRefGoogle Scholar
Ullman, D.G. (1997). The Mechanical Design Process. New York: McGraw–Hill.Google Scholar
Ullman, D.G., Wood, S., & Craig, D. (1990). The importance of drawing in the mechanical design process. Computer Graphics 14 (2), 263274.Google Scholar
Wilcox, L., Schilit, B., & Sawhney, N. (1997). Dynomite: a dynamically organized ink and audio notebook. Proc. ACM Conf. Human Factors in Computing Systems, pp. 186193.Google Scholar
Yang, M.C., & Cham, J.G. (2007). An analysis of sketching skill and its role in early stage engineering design. ASME Journal of Mechanical Design 129 (5), 476482.Google Scholar
Yeh, R.B., Liao, C., Klemmer, S.R., Guimbretière, F., Lee, B., Kakaradov, B., Stamberger, J., & Paepcke, A. (2006). ButterflyNet: a mobile capture and access system for field biology research. Proc. Conf. Computer–Human Interactions, pp. 571580.Google Scholar