Integrated control and user interfaces for a space

Building and Environment - Tập 46 - Trang 938-944 - 2011
Sami Karjalainen1, Veijo Lappalainen1
1VTT Technical Research Centre of Finland, P.O. Box 1000, 02044 Espoo, Finland

Tài liệu tham khảo

Kolokotsa, 2005, Implementation of an integrated indoor environment and energy management system, Energy and Building, 37, 93, 10.1016/j.enbuild.2004.05.008 Guillemin, 2001, An innovative lighting controller integrated in a self-adaptive building control system, Energy and Building, 33, 477, 10.1016/S0378-7788(00)00100-6 Guillemin, 2002, Experimental results of a self-adaptive integrated control system in buildings: a pilot study, Solar Energy, 72, 397, 10.1016/S0038-092X(02)00015-4 Karjalainen, 2007, User problems with individual temperature control in offices, Building and Environment, 42, 2880, 10.1016/j.buildenv.2006.10.031 Bakker, 2001, Integrated predictive adaptive control of heating, cooling, ventilation, daylighting and electrical lighting in buildings, International Journal of Solar Energy, 21, 203, 10.1080/01425910108914371 Raja, 2001, Thermal comfort: use of controls in naturally ventilated buildings, Energy and Building, 33, 235, 10.1016/S0378-7788(00)00087-6 Fanger, 1970 van Hoof, 2008, Forty years of Fanger’s model of thermal comfort: comfort for all?, Indoor Air, 18, 182, 10.1111/j.1600-0668.2007.00516.x Cole, 2009, Reconciling human and automated intelligence in the provision of occupant comfort, Intelligent Buildings International, 1, 39, 10.3763/inbi.2009.0007 Leaman, 2001, Assessing building performance in use 4: the probe occupant surveys and their implications, Building Research and Information, 29, 129, 10.1080/09613210010008045 ISO 9241–11, 1998 Dale, 1983, Ergonomic aspects of heating controls, Building Services Engineering Research & Technology, 4, 22, 10.1177/014362448300400105 Lutzenhiser, 1992, A question of control: alternative patterns of room air-conditioner use, Energy and Buildings, 18, 193, 10.1016/0378-7788(92)90013-7 Kempton, 1992, “I always turn it on super”: user decisions about when and how to operate room air conditioners, Energy and Buildings, 18, 177, 10.1016/0378-7788(92)90012-6 Wittchen, 2005, Use of weather forecasts to control night cooling, 1347 Kolokotsa, 2007, Artificial intelligence in buildings: a review of the application of fuzzy logic, Advances in Building Energy Research, 1, 29, 10.1080/17512549.2007.9687268 Dounis, 2009, Advanced control systems engineering for energy and comfort management in a building environment – A review, Renewable and Sustainable Energy Reviews, 13, 1246, 10.1016/j.rser.2008.09.015 Paiho, 2002, Rakennusten uuden säätö- ja energianhallintaratkaisut, Espoo: VTT Tiedotteita – Research Notes, 2134 Nielsen J. Ten usability heuristics. (Homepage of useit.com). Available: http://www.useit.com/papers/heuristic/heuristic_list.html. [Visited: 2010, 27th May]. Norman, 1988 Polson, 1990, Theory-based design for easily learned interfaces, Human-Computer Interaction, 5, 191, 10.1207/s15327051hci0502&3_3 Shneiderman, 2005 Karjalainen S, Siivola M, Johnson M, Nieminen M. User requirements and user interface solutions for individual control of temperature in offices. Espoo: Software Business and Engineering Institute, Helsinki University of Technology, preprints 14 (HUT-SoberIT-B14); 2007. Karjalainen S. The characteristics of usable room temperature control. Doctoral dissertation. Espoo: VTT Publications 662; 2007. Karjalainen, 2010, Usability guidelines for room temperature controls, Intelligent Buildings International, 2, 85 Bordass, 1994, Control strategies for building services: the role of the user Bordass, 2001, Assessing building performance in use 5: conclusions and implications, Building Research & Information, 29, 144, 10.1080/09613210010008054