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      Sustainability in Manufacturing and Factories of the Future

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      https://www.riss.kr/link?id=A105939487

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      다국어 초록 (Multilingual Abstract)

      An increasing global demand for natural resources and the inherent challenges accompanying this demand pose a great task for manufacturing companies. Apart from this, new technologies and a demographic change of the workforce as well as the desire for...

      An increasing global demand for natural resources and the inherent challenges accompanying this demand pose a great task for manufacturing companies. Apart from this, new technologies and a demographic change of the workforce as well as the desire for new individualized products make manufacturing more challenging than ever. To succeed in this new setting manifold perspectives of a factory have been proposed in order to enhance the understanding of the complex interdependencies between the factory elements. Against this background, this paper starts with a short overview regarding the paradigm change in manufacturing including contemporary trends triggering the requirements for factories of the future. Subsequent to that, a selection of factory perspectives is revised indicating the demand for a new holistic perspective of a factory that is more suitable with respect to the new trends. For that reason a new holistic perspective on the factory of the future is presented.

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      참고문헌 (Reference)

      1 Ball, P. D., "Zero Carbon Manufacturing Facility-towards Integrating Material, Energy, and Waste Process Flows" 223 (223): 1085-1096, 2009

      2 World Trade Organization, "World Trade Report 2013"

      3 BMW Group, "Wie ein Fahrzeug Entsteht"

      4 Duflou, J. R., "Towards Energy and Resource Efficient Manufacturing: A Processes and Systems Approach" 61 (61): 587-609, 2012

      5 Wagner, U., "The State-of-the-Art and Prospects of Learning Factories" 3 : 109-114, 2012

      6 The International Fab Lab Association, "The Fab Charter"

      7 Weiser, M., "The Computer for the 21st Century" 265 (265): 94-104, 1991

      8 Ashton, K., "That ‘Internet of Things’ Thing" 22 : 97-114, 2009

      9 Kuntzky, K., "Systematische Entwicklung von Produkt-Service Systemen" Vulkan Verlag 18ff-, 2013

      10 Helper, S., "Strengthening American Manufacturing: A New Federal Approach"

      1 Ball, P. D., "Zero Carbon Manufacturing Facility-towards Integrating Material, Energy, and Waste Process Flows" 223 (223): 1085-1096, 2009

      2 World Trade Organization, "World Trade Report 2013"

      3 BMW Group, "Wie ein Fahrzeug Entsteht"

      4 Duflou, J. R., "Towards Energy and Resource Efficient Manufacturing: A Processes and Systems Approach" 61 (61): 587-609, 2012

      5 Wagner, U., "The State-of-the-Art and Prospects of Learning Factories" 3 : 109-114, 2012

      6 The International Fab Lab Association, "The Fab Charter"

      7 Weiser, M., "The Computer for the 21st Century" 265 (265): 94-104, 1991

      8 Ashton, K., "That ‘Internet of Things’ Thing" 22 : 97-114, 2009

      9 Kuntzky, K., "Systematische Entwicklung von Produkt-Service Systemen" Vulkan Verlag 18ff-, 2013

      10 Helper, S., "Strengthening American Manufacturing: A New Federal Approach"

      11 Zuehlke, D., "Smartfactory-towards a Factory-of-Things" 34 (34): 129-138, 2010

      12 Roosevelt Institute, "Six Reasons Manufacturing is Central to the Economy"

      13 Heilala, J., "Simulation-based Sustainable Manufacturing System Design" 1922-1930, 2008

      14 Koren, Y., "Reconfigurable Manufacturing Systems" 48 (48): 527-540, 1999

      15 Despeisse, M., "Re-Engineering Manufacturing for Sustainability" Springer 565-570, 2013

      16 Aurich, J. C., "Produkt-Service Systeme" Springer-Verlag 137-140, 2010

      17 Hu, S., "Product Variety and Manufacturing Complexity in Assembly Systems and Supply Chains" 57 (57): 45-48, 2008

      18 Herrmann, C., "Process Chain Simulation to Foster Energy Efficiency in Manufacturing" 1 (1): 221-229, 2009

      19 Hildebrand, T., "Plug+ Produce:Gestaltungsstrategien für die wandlungsfähige Fabrik"

      20 Wiendahl, H. -P., "Planung modularer Fabriken" Hanser 2005

      21 Chen, J., "Photocatalytic Construction and Building Materials : From Fundamentals to Applications" 44 (44): 1899-1906, 2009

      22 Krajewski, L. J., "Operations Management, Processes and Supply Chains" 2010

      23 Henry, F., "My Life and Work, Garden City" Garden City Publishing Company, Inc. 71-, 1922

      24 David Alan Dornfeld, "Moving Towards Green and Sustainable Manufacturing" 한국정밀공학회 1 (1): 63-66, 2014

      25 Lee, H. L., "Modelling the Costs and Benefits of Delayed Product Differentiation" 43 (43): 40-53, 1997

      26 Chryssolouris, G., "Manufacturing Systems : Skills & competencies for the Future" 7 : 17-24, 2013

      27 Jones, D. T., "Machine That Changed the World" Simon and Schuster 64ff-, 1990

      28 Chertow, M. R., "Industrial Symbiosis: Literature and Taxonomy" 25 (25): 313-337, 2000

      29 Ayres, R. U., "Industrial Metabolism:Restructuring for Sustainable Development" United Nations University Press 6-, 1994

      30 Despeisse, M., "Industrial Ecology at Factory Level-A Conceptual Model" 31 : 30-39, 2012

      31 Koren, Y., "Impact of Manufacturing System Configuration on Performance" 47 (47): 369-372, 1998

      32 ICT Consultation Group, "ICT and Energy Efficiency: The Case for Manufacturing" European Commission 20-27, 2009

      33 Gershenfeld, N., "How to Make Almost Anything: The Digital Fabrication Revolution" 91 : 58-, 2012

      34 Reinert, E. S., "How Rich Countries Got Rich ... and Why Poor Countries Stay Poor" Constable 77-151, 2007

      35 EyeWitness to History, "Henry Ford Changes the World, 1908"

      36 Herrmann, C., "Ganzheitliches Life Cycle Management" Springer-Verlag 30-, 2010

      37 Schenk, M., "Fabrikplanung und Fabrikbetrieb: Methoden für die wandlungsfähige und vernetzte Fabrik" Springer-Verlag 137-138, 2014

      38 Mikhak, B., "Fab Lab: An Alternate Model of ICT for Development" 2002

      39 Hu, S. J., "Evolving Paradigms of Manufacturing: From Mass Production to Mass Customization and Personalization" 7 : 3-8, 2013

      40 Thiede, S., "Environmental Aspects in Manufacturing System Modelling and simulation-State of the Art and Research Perspectives" 6 (6): 78-87, 2013

      41 Eyer, J., "Energy Storage for the Electricity Grid:Benefits and Market Potential Assessment Guide"

      42 Müller, E., "Energieeffiziente Fabriken planen und betreiben" Springer 43-47, 2009

      43 Hesselbach, J., "Energie- und klimaeffiziente Produktion" Springer 14-15, 2012

      44 Westkämper, E., "Einführung in die Organisation der Produktion" Springer 195-196, 2006

      45 "Digitale Fabrik - Grundlagen"

      46 Tseng, M. M., "Design for Mass Customization" 45 (45): 153-156, 1996

      47 Berkhout, P. H., "Defining the Rebound Effect" 28 (28): 425-432, 2000

      48 Braungart, M., "Cradle-to-Cradle Design : Creating Healthy Emissions-A Strategy for Eco-Effective Product and System Design" 15 (15): 1337-1348, 2007

      49 Tao, F., "Cloud Manufacturing: A Computing and Service-Oriented Manufacturing Model" 225 : 1969-1976, 2011

      50 Wiendahl, H. -P., "Changeable Manufacturing-Classification, Design and Operation" 56 (56): 783-809, 2007

      51 Eiffert, P., "Building-Integrated Photovoltaic Designs for Commercial and Institutional Structures: A Sourcebook for Architects" DIANE Publishing 67-68, 2000

      52 Ko, J., "Balancing of Manufacturing Systems with Complex Configurations for Delayed Product Differentiation" 46 (46): 4285-4308, 2008

      53 The Economist, "Back to Making Stuff"

      54 Hu, S. J., "Assembly System Design and Operations for Product Variety" 60 (60): 715-733, 2011

      55 Corinne, R. W., "Appropriate Use of Green Manufacturing Frameworks" 196-201, 2010

      56 Michaloski, J. L., "Analysis of Sustainable Manufacturing using Simulation for Integration of Production and Building Service" 93-101, 2011

      57 Masaud, T. M., "An Overview of Energy Storage Technologies in Electric Power Systems: What is the Future?" 1-6, 2010

      58 Wooldridge, M., "An Introduction to Multi-Agent Systems" John Wiley & Sons 223-249, 2002

      59 안성훈, "An Evaluation of Green Manufacturing Technologies Based on Research Databases" 한국정밀공학회 1 (1): 5-9, 2014

      60 Gutowski, T. G., "A Global Assessment of Manufacturing : Economic Development, Energy Use, Carbon Emissions, and the Potential for Energy Efficiency and Materials Recycling" 38 : 81-106, 2013

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2015-04-01 평가 SCIE 등재 (기타) KCI등재
      2008-06-23 학회명변경 영문명 : Korean Society Of Precision Engineering -> Korean Society for Precision Engineering
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 3.62 2.24 0
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0 0 0 0.21
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