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Visual Interactivity to Make Sense of Heterogeneous Streams of Design Activity Data

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Design Computing and Cognition '18 (DCC 2018)

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Abstract

The goal of our project is to design computational environments to help understand or presume the origin, trajectories, or relationships of a certain part or aspect of an existing designed artifact.

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References

  1. Ye Y, Yamamoto Y, Nakakoji K (2008) Expanding the knowing capability of software developers through knowledge collaboration. IJTPM (Int J Technol, Policy Manag) 8(1):41–58 (Special Issue on Human Aspects of Information Technology Development, Inderscience Publishers)

    Article  Google Scholar 

  2. Mining Software Repositories. http://www.msrconf.org (visited 2017-12-01)

  3. Chaturvedi KK, Sing VB, Singh P (2013) Tools in mining software repositories. In: Proceedings of 13th international conference on computational science and its applications 2013. Ho Chi Minh City, 2013, pp 89–98

    Google Scholar 

  4. Moran TP, Carroll JM (eds) (1996) Design rationale: concepts, techniques, and use. CRC Press

    Google Scholar 

  5. Schoen DA (1983) The reflective practitioner: how professionals think in action. Basic Books, New York

    Google Scholar 

  6. Carroll JM (ed) (2013) Creativity and rationale: enhancing human experience by design. Human-Computer Interaction Series, Springer, London

    Google Scholar 

  7. Rittel HWJ (1972) On the planning crisis: systems analysis of the first and second generations. Bedriftsokonomen 8:390–396

    Google Scholar 

  8. Conklin J, Begeman M (1988) gIBIS: a hypertext tool for exploratory policy discussion. Ransactions oj Office Injonnation Systems 6(4):303–331

    Article  Google Scholar 

  9. Compendium. [http://www.compendiumng.org/] (visited 2017–12)

  10. Bracewell R, Wallace K (2003) A tool for capturing design rationale. In: Proceedings of international conference on engineering design (ICED’03), Stockholm, Sweden, pp 185–186

    Google Scholar 

  11. Kirschner PA, Buckingham Shum SJ, Carr CS (eds) (2003) Visualizing argumentation: software tools for collaborative and educational sense-making. Springer, London, UK

    Google Scholar 

  12. Hassanaly P, Herrmann T, Kunau G, Zacklad M (eds) (2006) Cooperative systems design: seamless integration of artifacts and conversations—enhanced concepts of infrastructure for communication. In: Frontiers in artificial intelligence and applications, IOS Press, p 137

    Google Scholar 

  13. Fischer G, Grudin J, Lemke AC, McCall R, Ostwald J, Reeves BN, Shipman F (1992) Supporting indirect, collaborative design with integrated knowledge-based design environments. Human Comput Interact 7(3):281–314

    Article  Google Scholar 

  14. Hisarciklilar O, Boujut J-F (2007) An annotation based approach to support design communication. In: Proceedings of international conference on engineering design (ICED’07). Paris, France, pp 170–180

    Google Scholar 

  15. Do EY-L (2011) Sketch that scene for me and meet me in cyberspace. In: Wang X, Tsai JJ-H (eds) Collaborative design in virtual environments, ISCA 48. Springer, pp 121–130

    Google Scholar 

  16. Rekimoto J (1999) Time-machine computing: a time-centric approach for the information environment. In: Proceedings of the ACM symposium on user interface software and technology (UIST’99), pp 45–54

    Google Scholar 

  17. Hill WC, Hollan JD, Wroblewski D, McCandless T (1992) Edit wear and read wear. In: Proceedings of ACM conference on human factors in computing systems (CHI’92), pp 3–9

    Google Scholar 

  18. Shirai Y, Yamamoto Y, Nakakoji K (2009) Time-based authoring tools for informal information management. In: Symposium on interactive visual information collections and activity (IVICA2009). Austin, TX, pp 1–6

    Google Scholar 

  19. Mangano N, LaToza TD, Petre M, van der Hoek (2014) Supporting informal design with interactive whiteboards. In: Conference on human factors in computing systems (CHI2014), April 2014, pp 331–340

    Google Scholar 

  20. Shirai Y, Yamamoto Y, Nakakoji K (2006) A history-centric approach for enhancing web browsing experiences. In: Extended abstracts of conference on human factors in computing systems (CHI2006), pp 1319–1324

    Google Scholar 

  21. Girgensohn A, Marlow J, Shipman F, Wilcox L, (2016) Guiding users through asynchronous meeting content with hypervideo playback plans. In: Proceedings of the 27th ACM conference on hypertext and social media (HT’16). ACM, New York, NY, USA, pp 49–59

    Google Scholar 

  22. Mattoso M, Glavic B (eds) (2016) Proceedings of 6th international provenance and annotation workshop, IPAW 2016. McLean, VA, USA, June 7–8, 2016; Proceedings, lecture notes in computer science, vol 9672. Springer

    Google Scholar 

  23. Silva C, Freire J, Santos E, Anderson E (2010) Provenance-enabled data exploration and visualization with VisTrails. In: 2010 23rd SIBGRAPI conference on Graphics, patterns and images tutorials (SIBGRAPI-T), pp 1–9

    Google Scholar 

  24. Freire J, Koop D, Santos E, Silva CT (2008) Provenance for computational tasks: a survey. Comput Sci Eng 10(3):11–21

    Article  Google Scholar 

  25. Wheat AJ (2015) External representation of provenance in intelligence analysis, In: Infovis sensemaing workshop

    Google Scholar 

  26. Gotz D, Zhou MX (2009) Characterizing users visual analytic activity for insight provenance. Inf Visual 8(1):42–55

    Article  Google Scholar 

  27. Nakakoji K, Yamamoto Y, Kita Y (2016) Visual interaction design for experiencing and engaging with a large chronological table. In: Proceedings of the 3rd Histoinformatics workshop on computational history (Histoinformatics 2016). Krakow, Poland, pp 47–51

    Google Scholar 

  28. Nakakoji K, Yamamoto Y, Matsubara N, Kawashima T, Hamuro N, Uno T (2017) Visual interactivity for understanding relationships and uncovering correlations among temporal numerical data of thousands of elements. In: Proceedings of the 31st annual conference of the japanese society for artificial intelligence (JSAI2017), 2D2-4in2. Nagoya, Japan, pp 1–3 (in Japanese)

    Google Scholar 

  29. Nakakoji K, Yamamoto Y, Matsubara N, Shirai Y (2012) Toward unweaving streams of thought for reflection in early stages of software design. IEEE Softw Spec Issue Studying Prof Softw Des 29(1):34–38

    Google Scholar 

  30. Ingold T (2007) Lines: a brief history. Routledge

    Google Scholar 

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Acknowledgements

The research presented in this paper is partially supported by JST CREST Grant Number JPMJCR1401 Japan. We would like to thank Nobuto Matsubara for his technical discussions and support.

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Correspondence to Kumiyo Nakakoji .

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Yamamoto, Y., Nakakoji, K. (2019). Visual Interactivity to Make Sense of Heterogeneous Streams of Design Activity Data. In: Gero, J. (eds) Design Computing and Cognition '18. DCC 2018. Springer, Cham. https://doi.org/10.1007/978-3-030-05363-5_37

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  • DOI: https://doi.org/10.1007/978-3-030-05363-5_37

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