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FireGuide: A Context-Aware Fire Response Guide for the Building Occupants

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Smart Sensing and Context (EuroSSC 2010)

Part of the book series: Lecture Notes in Computer Science ((LNCCN,volume 6446))

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Abstract

Context-awareness is a basic requirement of ubiquitous computing applications. While lots of good efforts have been made to deliver context-aware tour guide or museum guide, we ask ourselves: “can we build a context-aware fire guide to assist on-site fire victims to escape from a fire?” In reality, many people lose their lives in fire disasters due to bad judgment. Poor decisions are likely made in urgent situations. Timely and appropriate guidance is thus crucial to help people safely escape from the hazardous situations. So far, various pervasive computing techniques have been used to assist the firefighters in different aspects of their mission. However, not much research has been reported on assisting the occupants with personal and user-centric devices. In this paper, we present the idea of designing a context-aware fire response guide (FireGuide) for the building occupants from a technical perspective. By sensing the context of the building on fire and the occupants in the building, FireGuide advises either the fastest safe escape route or an action-list for “no-way-out” people. We evaluate the applicability of FireGuide through both user studies and experiments, which show that context-awareness in such a fire response guide can help improve the egress time. We also highlight the lessons we learn in designing such mission-critical context-aware applications in the paper.

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References

  1. Fire dynamics simulator (FDS), http://www.ohloh.net/p/4709 (accessed April 8, 2009)

  2. Blohberger, F., Grundler, G.: Evacuation system having escape identification lights. United States Patent Application 20090102619 (2009)

    Google Scholar 

  3. Brushlinsky, N., Sokolov, S., Wagner, I.P., Hall, J.: World fire statistics (2006), http://ec.europa.eu/consumers/cons_safe/presentations/21-02/ctif.pdf (accessed April 13, 2009)

  4. Burke, J., Murphy, R., Coovert, M., Riddle, D.: Moonlight in Miami: Field study of human-robot interaction in the context of an urban search and rescue disaster response training exercise. Human-Computer Interaction 19(1), 85–116 (2004)

    Article  Google Scholar 

  5. Chen, G., Li, M., Kotz, D.: Data-centric middleware for context-aware pervasive computing. Pervasive and Mobile Computing, pp. 216–253 (2007)

    Google Scholar 

  6. Denef, S., Ramirez, L., Dyrks, T.: Letting tools talk: interactive technology for firefighting. In: Proceedings of the 27th International Conference on Human Factors in Computing Systems, pp. 4447–4452 (2009)

    Google Scholar 

  7. Jiang, X., Chen, N., Hong, J., Wang, K., Takayama, L., Landay, J.: Siren: Context-aware computing for firefighting. In: Ferscha, A., Mattern, F. (eds.) PERVASIVE 2004. LNCS, vol. 3001, pp. 87–105. Springer, Heidelberg (2004)

    Chapter  Google Scholar 

  8. Klann, M.: Playing with Fire: User-Centered Design of Wearable Computing for Emergency Response. In: Löffler, J., Klann, M. (eds.) Mobile Response 2007. LNCS, vol. 4458, pp. 116–125. Springer, Heidelberg (2007)

    Chapter  Google Scholar 

  9. Landgren, J., Nulden, U.: A study of emergency response work: patterns of mobile phone interaction. In: Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, pp. 1323–1332. ACM, New York (2007)

    Chapter  Google Scholar 

  10. Liu, D.: Shanghai business college dormitory fire: four students dead, http://news.xinhuanet.com/newscenter/2008-11/14/content_10357255_1.htm (accessed July 27, 2009)

  11. Luyten, K., Winters, F., Coninx, K., Naudts, D., Moerman, I.: A situation-aware mobile system to support fire brigades in emergency situations. In: Meersman, R., Tari, Z., Herrero, P. (eds.) OTM 2006 Workshops. LNCS, vol. 4278, pp. 1966–1975. Springer, Heidelberg (2006)

    Chapter  Google Scholar 

  12. Mann, H., Whitney, D.: On a test of whether one of two random variables is stochastically larger than the other. In: The Annals of Mathematical Statistics, pp. 50–60 (1947)

    Google Scholar 

  13. Muir, H., Bottomley, D., Marrison, C.: Effects of motivation and cabin configuration on emergency aircraft evacuation behavior and rates of egress. The International Journal of Aviation Psychology 6(1), 57–77 (1996)

    Article  Google Scholar 

  14. Salam, H.A., Rizvi, S., Ainsworth, S., Olariu, S.: A durable sensor enabled lifeline support for firefighters. In: IEEE Conference on Computer Communications Workshops INFOCOM, pp. 1–6 (2008)

    Google Scholar 

  15. Shastri, J.: Safe Navigation during Fire Hazards using Specknets. Master’s thesis, The University of Edinburgh (2006)

    Google Scholar 

  16. Song, G.: Firefighting in public places. Chinese people’s public security university press (2002)

    Google Scholar 

  17. Tabirca, T., Brown, K., Sreenan, C.: A Dynamic Model for Fire Emergency Evacuation Based on Wireless Sensor Networks. In: Proceedings of the Eighth International Symposium on Parallel and Distributed Computing, pp. 29–36. IEEE Computer Society, Los Alamitos (2009)

    Google Scholar 

  18. Toups, Z., Kerne, A.: Implicit coordination in firefighting practice: Design implications for teaching fire emergency responders. In: Proceedings of the SIGCHI Conference on Human Factors in Computing Systems, pp. 707–716. ACM, New York (2007)

    Chapter  Google Scholar 

  19. Wang, P., Ying, A., Jiang, B.: Analysis of the fire caused heavy casualties in shenzhen: the fire was mistaken as a show, http://news.sina.com.cn/c/2008-09-22/121716333822.shtml (accessed November 16, 2008)

  20. Wilson, J., Wright, P.: Head-mounted display efficacy study to aid first responder indoor navigation. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 223(3), 675–688 (2009)

    Google Scholar 

  21. Wirz, M., Roggen, D., Tröster, G.: Decentralized detection of group formations from wearable acceleration sensors. In: Proceedings of 2009 IEEE Int. Conf. on Social Computing, pp. 952–959 (2009)

    Google Scholar 

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Li, Y. et al. (2010). FireGuide: A Context-Aware Fire Response Guide for the Building Occupants. In: Lukowicz, P., Kunze, K., Kortuem, G. (eds) Smart Sensing and Context. EuroSSC 2010. Lecture Notes in Computer Science, vol 6446. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-16982-3_1

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  • DOI: https://doi.org/10.1007/978-3-642-16982-3_1

  • Publisher Name: Springer, Berlin, Heidelberg

  • Print ISBN: 978-3-642-16981-6

  • Online ISBN: 978-3-642-16982-3

  • eBook Packages: Computer ScienceComputer Science (R0)

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