PERFORMANCE-BASED AUTOMATION SYSTEM FOR KITCHEN INTERIOR DESIGN

Authors

  • Deniz Ayşe Yazıcıoğlu Istanbul Technical University
  • Alaattin Kanoğlu Istanbul Technical University

DOI:

https://doi.org/10.14738/assrj.313.2476

Keywords:

Kitchen interior design, performance-based design, designer performance, competition by design, innovation by design.

Abstract

The objective of the study has been determined as development of a holistic process management model considering the features of companies producing and marketing kitchen equipment and aiming to improve the kitchen design performance. In line with this defined objective the consecutive/simultaneous steps taken as the methodology are: determination of the measurement evaluation approaches and methods used in practice of the company (which has 60 national and international dealers) considered as an example model; identification and verification of issues affecting the design performance of the company which  occurs/may occur at every stage of the current project service process; making works to eliminate such problems and ensuring the integration of results obtained from such works with the current  existing project service processes of the company; developing the process management model in conceptual dimension on the basis of this integration; verification of the conceptual model; development of a prototype of the conceptual model in objective size and testing the functionality of the model. The relationship between features of all entities in the design and production process and usage process performance prior to design/during design process/and subsequent to design of the project can be questioned and measured quickly by virtue of the model developed within the study. What’s more, all stakeholders in the company are ensured to benefit from the experience of each other through provision of a feedback mechanism by virtue of a dealer network. Furthermore, configuration of customer satisfaction data needed by the R&D departments and development of strategies in managerial level through analytical work based on these data are also possible.

Author Biographies

Deniz Ayşe Yazıcıoğlu, Istanbul Technical University

Interior Design Department

Alaattin Kanoğlu, Istanbul Technical University

Architecture Department

References

Arslan, S. ve Kanoğlu, A. (2010). Başarım Tabanlı Yapım: Anahtar Kavramlar, Olanaklar, Bariyerler ve Bir Model, 1. Proje ve Yapım Yönetimi Kongresi, 29 September-1 October 2010, ODTÜ Kültür ve Kongre Merkezi, Ankara.

Kalay, Y.A. (1999). Performance-based design, Automation in Construction 8,pp.395-409;

Sullivan, L.H. (1934). Kindergarten chats on architecture, in: C.F. Bragdon-Ed., Education and Democracy, Scarab Fraternity Press.

Yin, Y., Qin, S. and Holland, R. (2011). Development of a design performance measurement matrix for improving collaborative design during a design process. International Journal of Productivity and Performance Management, Vol. 60, No. 2.

Shi, X. (2010). Performance-based and performance-driven architectural design and optimization, Front. Archit. Civ. Eng. China, Vol.4, No.4.

Taticchi, P., Balachandran, K. and Tonelli, F. (2012). Performance Measurement and Management Systems: State of The Art, Guidelines for Design and Challenge, Vol.16, No.2.

Haponava, T. and Al-Jibouri, S. (2010). Establishing influence of design process performance on end-project goals in construction using process-based model. Benchmarking, Vol.17, No.5.

Budawara, N. (2009). Key Performance Indicators to Measure Design Performance in Construction, UMI Dissertations Publishing, The Department of Building, Civil and Environmental Engineering, Concordia University, Canada.

Hertenstein, J. H. and Platt, M. B. (2001). Valuing design: Enhancing corporate performance through design effectiveness Design Management Journal, Vol.12, No.3.

Bibby, L, Austin, S. and Bouchlaghem, D. (2006). The Impact of a Design Management Training Initiative on Project Performance, Engineering, Construction and Architectural Management Vol. 13, No.1.

Mendibil, K and MacBryde, J. (2006). Factors that affect the design and implementation of team-based performance measurement systems. International Journal of Productivity and Performance Management Vol. 55 No. 2.

Stone, R. D. (2009). Achieving Results with A Performance-Centered Design Framework, Performance Improvement, Vol. 48, No.5.

Whyte, J.K. and Gann, D.M. (2003). Design Quality Indicators: work in progress, Building Research & Information Vol.31, No.5.

Oyedelea, L.O. and Thamb, K.W. (2007). Clients’ assessment of architects’ performance in building delivery process: Evidence from Nigeria, Building and Environment, Vol. 42.

Arcan E.F. ve Evci F. (1992). Mimari Tasarıma Yaklaşım 1-Bina Bilgisi Çalışmaları, İki K Yayınevi, İstanbul.

Thiersch, H.R. (1977). Die Wahl des Richtigen Grudrisses, Planen Wohnen, Bauverlag GmbH, Berlin. Nevada’ October 2003, pp.1839-1844.

Blum. (2013). Dynamic Space- A New Kitchen Standard, Accessed 3 September 2013.

http://www.kitchenart.sydney/wp-content/uploads/blum-dynamic-space.pdf.

Amana. (2009). Kitchen Top of Mind’ For Design Upgrades: Amana Survey, Reveals Reported in Kitchen and Bath Design News, Accessed 13 March 2014. http://prestige123.com/What's-New.html

Harbor, B. (2009). Brand Survey Reveals Kıtchen Is Top of Mind For Desıgn-Most Important Room in House Continues to Leave Consumers Craving Sense of Style, Accessed 22 October 2015.

http://amana.com/assets/amana/pdfs/USECARE/AMA_KitchenDesign_07.08.09.pdf>,

Dynamic Space. (2015a). The History of Kitchen Zones, Accessed 22 July 2015.

http://www.dynamicspace.com/dynamicspace/us/04/01/06/index.html

Dynamic Space. (2015b). String Study, Accessed 22 July 2015

http://www.dynamicspace.com/dynamicspace/us/04/01/03/index.html

Child, B. G. (1914). The efficient kitchen: definite directions for the planning, arranging and equipping of the modern labor-saving kitchen. A practical book for the home-maker, University of California Libraries.

Dynamic Space. (2016). The History of Kitchen Zones, Accessed 05 January 2016. http://www.dynamicspace.us/dynamicspace/en/04/01/06/index.html.

Illinois University. (2015). The term "work triangle" has its origin in a design study performed at the University of Illinois Small Homes Council-Building Research, Accessed 30 October 2015.

http://www.arch.illinois.edu/programs/engagement/brc/

Vikipedia. (2013). Kitchen work triangle, Accessed 22 August 2013.

http://en.wikipedia.org/wiki/Kitchen_work_triangle

Brax, B., Paulsson, J. and Sperling, L. (1975). Standard kitchens and the physically disabled, Batiment International, Building Research and Practice, Vol.3, No.4.

Pal, R. C. and Rehman, I. H. (2008). Efficient cookstove technology for improving the kitchen environment and livelihood for women in rural India, International Journal of Ambient Energy, Vol.29, No.3.

Rymala, M. (2011). Application of Ergonomics in Kitchen Designing - Indian Perspective: Use of Anthropometric Measurements, Environmental Factors and Comfort Features For Efficient and Pleasant Cooking, LAP LAMBERT Academic Publishing.

Yang, G. and Liang, L. (1990). The Determination of Optimum Heights for Chinese Kitchen Facilities, Vol.33, No.7.

Demirkan, H. and Olguntürk, N. (2013). A priority-based ‘design for all’ approach to guide home designers for independent living, Architectural Science Review.

Cline, H.L. (2006). The Evaluation of Universal Design Kitchen Features by People in Wheelchairs, Virginia Polytechnic Institute and State University, ProQuest, UMI Dissertations Publishing.

Hrovatin, J., Sirok, K., Jevsnik, S., Oblak, L. and Berginc, J. (2012). Adaptability of Kitchen Furniture for Elderly People in Terms of Safety, Drvna Industrija, Vol.63, No.2.

Taha, Z. and Sulaiman, R. (2010). Perceived Kitchen Environment Among Malaysian Elderly, American J. of Engineering and Applied Sciences, Vol.3, No.2.

Wada, K., Tanaka, T., Suganuma, Y., Hashimoto, M. and Suzuki, T. (2013). Kitchen Extension Robot Module for Elderly Housing, 10th International Conference on Ubiquitous Robots and Ambient Intelligence (URAI), pp.378-382.

Rivet, B. (2009). Kitchen Ventilation Systems: Saving Energy Without Sacrificing Performance, Consulting - Specifying Engineer, Vol.46, No.4.

Mak, C. M. and Francis, W. H. (2002). A Study of Natural Ventilation in a Kitchen Using Computational Fluid Dynamics (CFD), Architectural Science Review, Vol.45, No.3.

Panwar, N. L. (2009). Design and Performance Evaluation of Energy Efficient Biomass Gasifier Based Cookstove on Multi Fuels, Mitigation and Adaptation Strategies for Global Change, Vol.14, No.7.

Lamkins, C. (2011). Kitchen and Bath Design: Sink Systems, Professional Builder.

Leung, Y.W., Tsang, K.F., Chui, K.T., Chu, H.Y. and Chow, W.H. (2012). The Energy Profile Study of Electric Kitchen Utensils for Residential Smart Kitchen, Advances in Power System Control, Operation and Management (APSCOM 2012), 9th IET International Conference.

O'Heir, J. (2007). Cooking Up a Digital Kitchen, Dealerscope, Vol.49, No.8.

Spurling, A. (2010). The Home Hub (Consumer Tech Kitchens), Engineering and Technology, Vol.5, No.9.

Srivastava, A., Duran, D., Pinder, M., Raghav, V. and Komerath, N. (2012). Conceptual Design of a Thermoelectric Edu-Kitchen System, Power, Signals, Controls and Computation (EPSCICON), 2012 International Conference, pp.1-6.

Ficocelli, M. and Nejat, G. (2012). The Design of an Interactive Assistive Kitchen System, Assistive Technology: The Official Journal of RESNA, Vol.24, No.4.

Cheng, L.E., Tseng, C.H. and Lu C.L. (2010). Design of Interactive e-Care Dining Table for Smart kitchen, 2010 International Conference on Computational Aspects of Social Network.

Morishita, H., Watanabe, K., Kuroiwa, T., Mori, T. and Sato, T. (2003). Development of Robotic Kitchen Counter: A Kitchen Counter Equipped with Sensors and Actuator for Action-adapted and Personally Fit Assistance, Proceedings of the 2003 IEEURSJ, International Conference on Intelligent Robots and Systems, Las Vegas.

Bonanni, L. and Lee, C. (2005). The Kitchen as a Graphical User Interface, Digital Creativity, Vol.16, No.2.

Stander, M., Hadjakos, A., Lochschmidt, N., Klos, C., Renner, B. and Muhlhauser, M. (2012). A Smart Kitchen Infrastructure, Multimedia (ISM), 2012 IEEE International Symposium on.

Lyon, P., Mattsson Sydner, Y., Fjellström, C., Janhonen-Abruquah, H. and Schröder, M. (2011). Continuity in The Kitchen: How Younger and Older Women Compare İn Their Food Practices and Use Of Cooking Skills, International Journal of Consumer Studies, Vo.35, No.5.

Afacan, Y. and Demirkan, H. (2011). An ontology-based universal design knowledge support system, Knowledge-Based Systems, Vol. 24.

Afacan, Y. and Demirkan, H. (2010). A priority-based approach for satisfying the diverse users’needs, capabilities and expectations: a universal kitchen design case, Journal of Engineering Design, Vol. 21, No. 2-3, April-June.

2020 Design. (2015). 2020 Design-Kitchen Design Software, Accessed 25 December 2015.

<http://www.2020spaces.com/2020products/2020design/

Asensio, P. and Ubach, M. (2003). Kitchen design: Kuchen design, teNeues Publishing Group, Kempen.

Baden-Powell, C. (2005). Architect's Pocket Book of Kitchen Design. Elsevier, Maryland Heights.

Beamish, J.,Parrott, K., Emmel, J. and Peterson, M.J. (2013). Kitchen Planning-Guidelines, Code, Standarts, John Wiley&Sons Inc., Hoboken, New Jersey.

Beazley, M. (1999). The New Kitchen Planner, Octopus Publishing Group Ltd., London.

Bouknight, J.K. (2004). New Kitchen Idea Book, Taunton Press, U.S. Kesseböhmer, Germany.

Cerver, F.A. (2006). Ultimate Kitchen Design, The Neues Publishing Company, U.S.A.

Conran, T. (2002). Kitchens The Hub of the Home, Conran Octopus Ltd, London.

David, G. (1994). Smart Kitchen: How to Create a Comfortable, Safe, Energy-Efficient, and Environment-Friendly Workspace, Ceres Press.

Edic, M. and Edic, R. (1999). Kitchens That Work: The Practical Guide to Creating a Great Kitchen, The Tauton Press.

Jankowski, W. (2001). Modern Kitchen Workbook: A Design Guide for Planning a Modern Kitchen. Rockport Publishers, Beverly.

King, H.T. (2006). Design Ideas for Home Decorating. Creative Homeowner Press, Emeryville.

Lester, K. and McGuerty, D. (2010). The Complete Guide to Contracting Your Home, F+W Media, Inc.

Lovett, S.M. (2006). The Smart Approach to Kitchen Design, Creative Homeowner Press, Emeryville.

Roney, C. (2008). Th e Nest Home Design Handbook: Simple Ways to Decorate, Organize and Personalize Your Place, Clarkson Potter, New York.

Maney, S. (2003). The New Smart Approach to Kitchen Design, Creative Homeowner, U.S.A.

Mielke, R. (2005). The Kitchen, Feierabend Verlag, Ohg, U.K.

Rand, E. and Perchuk, F. (1991). The Complete Book of Kitchen Design. Consumer Reports Books, New York.

Sweet, F. (2003). Kitchen Essentials, Ryland Petersand Small, Inc., New York.

Taylor, L. (1997). Kitchens, New HollandPublishers (UK) Ltd.

Yazıcıoglu, D.A. and Kanoglu, A. (2015). Enhancement of the Designer Performance in Kitchen Interior Design, Advances in Social Sciences Research Journal, Vol. 6, No. 2.

Yazıcıoglu, D.A. and Kanoglu, A. (2016). A Systematic Approach for Increasing The Success of Kitchen Interior Design Within The Context of Spatial User Requirements, Advances in Social Sciences Research Journal, Vol. 1, No. 3.

Piotrowski, C., ASID and IIDA. (2004). Becoming an Interior Designer, John Wiley&Sons Inc., Hoboken, New Jersey.

Dodsworth, S. (2009). The Fundamentals of Interior Design, Ava Publishing, U.K.

Tangaz, T. (2006). Interior Design Course: Principles, Practices, and Techniques for the Aspiring Designer, Barron’s Educational Series, U.S.A.

Mitton, M. (2011). Residential Interior Design: A Guide to Planning Spaces, Wiley, U.S.A.

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Published

2016-12-31

How to Cite

Yazıcıoğlu, D. A., & Kanoğlu, A. (2016). PERFORMANCE-BASED AUTOMATION SYSTEM FOR KITCHEN INTERIOR DESIGN. Advances in Social Sciences Research Journal, 3(13). https://doi.org/10.14738/assrj.313.2476

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