Key enablers for deploying artificial intelligence for circular economy embracing sustainable product design: Three case studies
暂无分享,去创建一个
[1] Charbel José Chiappetta Jabbour,et al. Industry 4.0 and the circular economy: a proposed research agenda and original roadmap for sustainable operations , 2018, Annals of Operations Research.
[2] Heikki Ailisto,et al. Tuottoa ja tehokkuutta Suomeen tekoälyllä , 2017 .
[3] C. Bakker,et al. Products That Last - product design for circular business models , 2014 .
[4] Jose Arturo Garza-Reyes,et al. Exploring Industry 4.0 technologies to enable circular economy practices in a manufacturing context , 2019, Journal of Manufacturing Technology Management.
[5] Ari Happonen,et al. Decarbonizing warehousing activities through digitalization and automatization with WMS integration for sustainability supporting operations , 2020 .
[6] Anil Mital,et al. Incorporating work factors in design for disassembly in product design , 2005 .
[7] Vasile Gherheș,et al. Technical and Humanities Students’ Perspectives on the Development and Sustainability of Artificial Intelligence (AI) , 2018, Sustainability.
[8] Haipeng Shen,et al. Artificial intelligence in healthcare: past, present and future , 2017, Stroke and Vascular Neurology.
[9] Sylwia Męcfal. Recenzja książki. Robert K. yin, Case Study Research. Design and Methods (fourth Edition), thousand Oaks, CA: Sage Publications, 2009 , 2012 .
[10] Peter Kostal,et al. The Intelligent Manufacturing Systems , 2013 .
[11] Conny Bakker,et al. A product design framework for a circular economy , 2015 .
[12] Nina Tura. Value creation for sustainability-oriented innovations: challenges and supporting methods , 2018 .
[13] Ray Y. Zhong,et al. Intelligent Manufacturing in the Context of Industry 4.0: A Review , 2017 .
[14] Pamela Baxter,et al. Qualitative Case Study Methodology: Study Design and Implementation for Novice Researchers , 2008 .
[15] Thomas F. Edgar,et al. Smart manufacturing, manufacturing intelligence and demand-dynamic performance , 2012, Comput. Chem. Eng..
[16] Kuo-Yi Lin,et al. User experience-based product design for smart production to empower industry 4.0 in the glass recycling circular economy , 2018, Comput. Ind. Eng..
[17] Vanessa Frías-Martínez,et al. Computational Sustainability and Artificial Intelligence in the Developing World , 2014, AI Mag..
[18] Erno Salmela,et al. Formalisation of front end innovation in supply network collaboration , 2013 .
[19] Vijay V. Raghavan,et al. Big Data and Data Analytics Research: From Metaphors to Value Space for Collective Wisdom in Human Decision Making and Smart Machines , 2017, Int. J. Semantic Web Inf. Syst..
[20] Maria Antikainen,et al. Digitalisation as an Enabler of Circular Economy , 2018 .
[21] Olaf Drögehorn,et al. Hackathons in Software Engineering Education - Lessons Learned from a Decade of Events , 2018, 2018 IEEE/ACM International Workshop on Software Engineering Education for Millennials (SEEM).
[22] Nick Bostrom,et al. Future Progress in Artificial Intelligence: A Survey of Expert Opinion , 2013, PT-AI.
[23] Matti Rissanen,et al. Business model design elements for electric car service based on digital data enabled sharing platform , 2019 .
[24] Petri Kuosmanen,et al. Digital design and manufacturing process comparison for new custom made product family – a case study of a bathroom faucet , 2013 .
[25] Angappa Gunasekaran,et al. IoT powered servitization of manufacturing – an exploratory case study , 2017 .
[26] Jouni Ikonen,et al. Code camps and hackathons in education - literature review and lessons learned , 2019, HICSS.
[27] Dirk Cattrysse,et al. Ease of disassembly of products to support circular economy strategies , 2017, Resources, conservation, and recycling.
[28] Erno Salmela,et al. Best collaboration practices in supply chain of technical wholesale items , 2011 .
[29] Petri Kuosmanen,et al. Digital Design Process and Additive Manufacturing of a Configurable Product , 2013 .
[30] N. Saccani,et al. The role of digital technologies to overcome Circular Economy challenges in PSS Business Models: an exploratory case study , 2018 .
[31] Maria Angela Ferrario,et al. SENSEI: Harnessing Community Wisdom for Local Environmental Monitoring in Finland , 2019, CHI Extended Abstracts.
[32] Ari Happonen,et al. From Asset Provider to Knowledge Company—Transformation in the Digital Era , 2018, Lecture Notes in Mechanical Engineering.
[33] N. Bocken,et al. Product design and business model strategies for a circular economy , 2016 .
[34] Ari Happonen,et al. Fleet Service Generation—Challenges in Corporate Asset Management , 2016, WCE 2016.
[35] M. Lytras,et al. Knowledge Management, Innovation and Big Data: Implications for Sustainability, Policy Making and Competitiveness , 2018, Sustainability.
[36] Chun-Wei Yang,et al. Applications of artificial intelligence in intelligent manufacturing: a review , 2017, Frontiers of Information Technology & Electronic Engineering.
[37] W. Gesler,et al. Approaches to sampling and case selection in qualitative research: examples in the geography of health. , 2000, Social science & medicine.
[38] Selmer Bringsjord,et al. A refutation of Penrose's Gödelian case against artificial intelligence , 2000, J. Exp. Theor. Artif. Intell..
[39] Surya Prakash Singh,et al. Connecting circular economy and industry 4.0 , 2019, Int. J. Inf. Manag..
[40] Izak Benbasat,et al. The Case Research Strategy in Studies of Information Systems , 1987, MIS Q..
[41] Ari Happonen,et al. New promises AI brings into circular economy accelerated product design: a review on supporting literature , 2020, E3S Web of Conferences.
[42] Miltiadis D. Lytras,et al. Enabling Technologies and Business Infrastructures for Next Generation Social Media: Big Data, Cloud Computing, Internet of Things and Virtual Reality , 2015, J. Univers. Comput. Sci..