Lean in High-Mix/Low-Volume industry: a systematic literature review
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Barbara Simeunović | Ivan Tomašević | Dragana Stojanović | Dragoslav Slović | Ivona Jovanović | D. Stojanovic | Barbara Simeunovic | I. Jovanović | Dragoslav Slović | I. Tomasevic | I. Jovanovic | Dragoslav Slovic | D. Stojanović
[1] Alexandre Augusto Massote,et al. Implementation of hybrid Kanban-CONWIP system: a case study , 2017 .
[2] Nico Vandaele,et al. The extent of knowledge of Quick Response Manufacturing principles: an exploratory transnational study , 2017, Int. J. Prod. Res..
[3] Elaine Aspinwall,et al. Total quality management implementation frameworks: Comparison and review , 2000 .
[4] Samir Lamouri,et al. The ConWip production control system: a systematic review and classification , 2018 .
[5] Nico Vandaele,et al. The application of Quick Response Manufacturing practices in Brazil, Europe, and the USA: An exploratory study , 2017 .
[6] Tarcisio Abreu Saurin,et al. Lean production in complex socio-technical systems: A systematic literature review , 2017 .
[7] Christer Karlsson,et al. A lean and global smaller firm , 1997 .
[8] Luis Villar-Fidalgo,et al. Applying kaizen to the schedule in a concurrent environment , 2019, Production Planning & Control.
[9] Eric Deakins,et al. Systems engineering effective supply chain innovations , 2014 .
[10] M. Naim,et al. Engineer-to-order supply chain management: A literature review and research agenda , 2009 .
[11] Jeffrey K. Liker,et al. The Toyota Production System and art: making highly customized and creative products the Toyota way , 2007 .
[12] Rachna Shah,et al. Defining and developing measures of lean production , 2007 .
[13] Cristovao Silva,et al. Workload Control and Order Release: A Lean Solution for Make-to-Order Companies , 2012 .
[14] Pankaj C. Patel,et al. The effect of environmental complexity and environmental dynamism on lean practices , 2013 .
[15] Matti Kaulio,et al. Sustaining performance under operational turbulence: The role of Lean in engineer-to-order operations , 2017 .
[16] Marcello Braglia,et al. Lean manufacturing tool in engineer-to-order environment: Project cost deployment , 2018, Int. J. Prod. Res..
[17] Marco Tantardini,et al. Lean implementation in non-repetitive companies: a survey and analysis , 2012 .
[18] Peter T. Ward,et al. Lean manufacturing: context, practice bundles, and performance , 2003 .
[19] Kuldip Singh Sangwan,et al. Lean manufacturing: literature review and research issues , 2014 .
[20] Jan Olhager,et al. Strategic positioning of the order penetration point , 2003 .
[21] Muhammad Zubair,et al. Productivity improvement of a manufacturing facility using systematic layout planning , 2016 .
[22] P. Hines,et al. Learning to evolve: A review of contemporary lean thinking , 2004 .
[23] Qin Zhang,et al. Lean system design for engineer-to-order manufacturing , 2016 .
[24] Wallace J. Hopp,et al. To Pull or Not to Pull: What Is the Question? , 2004, Manuf. Serv. Oper. Manag..
[25] Tullio Tolio,et al. A two-stage stochastic programming project scheduling approach to production planning , 2012 .
[26] Rosmaini Ahmad,et al. A Novel Mathematical Logic for Improvement Using Lean Manufacturing Practices , 2018, Journal of Advanced Manufacturing Systems.
[27] Erwin Rauch,et al. Synchronization of the Manufacturing Process and On-site Installation in ETO Companies , 2014 .
[28] Victor R. Prybutok,et al. The relationship between JIT practices and type of production system , 2001 .
[29] Ludo Gelders,et al. Using simulation to evaluate the introduction of a Kanban subsystem within an MRP-controlled manufacturing environment , 1998 .
[30] Jochen Deuse,et al. Renaissance of Group Technology: Reducing Variability to Match Lean Production Prerequisites , 2013, MIM.
[31] Denis Royston Towill,et al. Lean, agile or leagile? Matching your supply chain to the marketplace , 2000 .
[32] Iris D. Tommelein,et al. A New Set of Principles for Pursuing the Lean Ideal in Engineer-to-order Manufacturers , 2014 .
[33] Jan Ola Strandhagen,et al. CONWIP implementation in a system with cross-trained teams , 2019 .
[34] Eero Eloranta,et al. The Future Factory - Challenge for One-of-a-Kind Production , 1992 .
[35] R. J. Lindley,et al. Implementing Kanbans within high variety/low volume manufacturingenvironments , 1995 .
[36] George Q. Huang,et al. A systematic review of China’s belt and road initiative: implications for global supply chain management , 2019, Int. J. Prod. Res..
[37] Mark Stevenson,et al. On the meaning of ‘Waste’: review and definition , 2017 .
[38] Jay Jina,et al. Applying lean principles for high product variety and low volumes: some issues and propositions , 1997 .
[39] Marco Tantardini,et al. A lean-based ORR system for non-repetitive manufacturing , 2012 .
[40] Jan Olhager,et al. The impact of manufacturing and supply chain improvement initiatives: A survey comparing make-to-order and make-to-stock firms , 2012 .
[41] Cátia Barbosa,et al. Hybrid modelling of MTO/ETO manufacturing environments for performance assessment , 2018, Int. J. Prod. Res..
[42] Linda Hendry,et al. Applying world class manufacturing to make‐to‐order companies: problems and solutions , 1998 .
[43] A. Graves,et al. Implementing Lean in aerospace-challenging the assumptions and understanding the challenges , 2003 .
[44] Ibrahim Rawabdeh,et al. A model for the assessment of waste in job shop environments , 2005 .
[45] Li Ma,et al. Operation and control of flow manufacturing based on constraints management for high-mix/low-volume production , 2008 .
[46] Nick Rich,et al. The seven value stream mapping tools , 1997 .
[47] Ramesh Sharda,et al. Achieving Lean Objectives through RFID: A Simulation-Based Assessment , 2013, Decis. Sci..
[48] Cristovao Silva,et al. Lean control for make-to-order companies:integrating customer enquiry management and order release , 2014 .
[49] A. Azevedo,et al. Assessing the impact of performance determinants in complex MTO/ETO supply chains through an extended hybrid modelling approach , 2018, Int. J. Prod. Res..
[50] Linda Hendry,et al. Proposing a world-class manufacturing concept for the make-to-order sector , 2002 .
[51] Su Mi Dahlgaard-Park,et al. Lean Service: A literature analysis and classification , 2012 .
[52] Erwin Rauch,et al. Synchronization of Engineering, Manufacturing and on-site Installation in Lean ETO-Enterprises☆ , 2015 .
[53] Kristina Kjersem,et al. Lean project planning and control: empirical investigation of ETO projects , 2019 .
[54] Iris D. Tommelein,et al. Consequences of competitive bidding in project-based production , 2005 .
[55] Jostein Pettersen,et al. Defining Lean Production : Some conceptual and practical issues , 2008 .
[56] K. Stecke,et al. The evolution of production systems from Industry 2.0 through Industry 4.0 , 2018, Int. J. Prod. Res..
[57] Moacir Godinho Filho,et al. Complementing lean with quick response manufacturing: case studies , 2017 .
[58] Yahaya Yusuf,et al. A comparative study of lean and agile manufacturing with a related survey of current practices in the UK , 2002 .
[59] Steven H Bullard,et al. Lean production in the furniture industry: The double D assembly cell , 2004 .
[60] Muris Lage Junior,et al. Variations of the kanban system: Literature review and classification , 2010 .
[61] Adèle Paul-Hus,et al. The journal coverage of Web of Science and Scopus: a comparative analysis , 2015, Scientometrics.
[62] Anders Bystedt,et al. Interaction in the construction process—System effects for a joinery-products supplier , 2011 .
[63] Patricia Deflorin,et al. Challenges in the transformation to lean production from different manufacturing-process choices: a path-dependent perspective , 2012 .
[64] Alberto Portioli-Staudacher,et al. Extending lean frontiers: a kaizen case study in an Italian MTO manufacturing company , 2019, The International Journal of Advanced Manufacturing Technology.
[65] Roberto Panizzolo,et al. Applying the lessons learned from 27 lean manufacturers.: The relevance of relationships management , 1998 .
[66] Jan Olhager,et al. Hybrid manufacturing accounting in mixed process environments: A methodology and a case study , 2019, International Journal of Production Economics.
[67] Linda Hendry,et al. Developing a new world class model for small and medium sized make-to-order companies , 2002 .
[68] Pietro Romano,et al. Assessing the impact of just-in-time on operational performance at varying degrees of repetitiveness , 2013 .
[69] Flavio Augusto Picchi,et al. Productivity Gains in a Line Flow Precast Concrete Process after a Basic Stability Effort , 2014 .
[70] Joe Sanderson,et al. The challenges of supply strategy selection in a project environment: evidence from UK naval shipbuilding , 2008 .
[71] Lawrence D. Fredendall,et al. Concerning the theory of workload control , 2010, Eur. J. Oper. Res..
[72] D. Tranfield,et al. Towards a Methodology for Developing Evidence-Informed Management Knowledge by Means of Systematic Review , 2003 .
[73] Balkrishna E. Narkhede,et al. Value stream mapping in a discrete manufacturing: A case study , 2017 .
[74] Krishnaswami Srihari,et al. Lean transformation in a high mix low volume electronics assembly environment , 2014 .
[75] Léony Luis Lopes Negrão,et al. Lean practices and their effect on performance: a literature review , 2016 .
[76] Saurav Datta,et al. A fuzzy embedded leagility assessment module in supply chain , 2016 .
[77] S. M. James‐Moore,et al. Is lean manufacture universally relevant? An investigative methodology , 1997 .
[78] Rossella Pozzi,et al. An empirical application of lean management techniques to support ETO design and production planning , 2018 .
[79] Cristovao Silva,et al. A case study of the successful implementation of workload control : A practitioner-led approach , 2015 .
[80] M. Braglia,et al. Overall Task Effectiveness: a new Lean performance indicator in engineer-to-order environment , 2019, International Journal of Productivity and Performance Management.
[81] Jt Black,et al. Design rules for implementing the Toyota Production System , 2007 .
[82] Steve L. Hunter,et al. The Toyota Production System Applied to the Upholstery Furniture Manufacturing Industry , 2008 .
[83] Matthias Thürer,et al. Systematic review and discussion of production control systems that emerged between 1999 and 2018 , 2020 .
[84] Huan Neng Chiu,et al. A comprehensive review of lot streaming , 2005 .
[85] Pietro Romano,et al. A Systematic Literature Review on Recent Lean Research: State‐Of‐The‐Art and Future Directions , 2018 .
[86] Richard Cooney,et al. Is “lean” a universal production system?: Batch production in the automotive industry , 2002 .
[87] Peter T. Gianiodis,et al. On the integration of manufacturing strategy: deconstructing Hoshin Kanri , 2019, Management Research Review.
[88] Mark Stevenson,et al. Card-based production control: a review of the control mechanisms underpinning Kanban, ConWIP, POLCA and COBACABANA systems , 2016 .
[89] Nitin Seth,et al. Application of value stream mapping (VSM) for lean and cycle time reduction in complex production environments: a case study , 2017 .
[90] Sanjiv Kumar Jain,et al. A literature review of lean manufacturing , 2013 .
[91] Qing Hu,et al. Lean implementation within SMEs: a literature review , 2015 .
[92] Rambabu Kodali,et al. Design of lean manufacturing systems using value stream mapping with simulation , 2011 .
[93] Chikong Huang,et al. Simulation and Analysis for Layout of Aerospace Sheet Metal Process with Lean Concept , 2006 .
[94] José Moyano-Fuentes,et al. International Journal of Operations & Production Management Emerald Article: Learning on lean: a review of thinking and research , 2012 .
[95] S.-H. Liu,et al. A novel approach to lean control for Taiwan-funded enterprises in mainland China , 2005 .
[96] Matthias Holweg,et al. The genealogy of lean production , 2007 .
[97] Zhigang Zeng,et al. Two-way scheduling optimization of the supply chain in one-of-a-kind production based on dynamic production capacity restrictions , 2018 .
[98] Jannes Slomp,et al. A lean production control system for high-variety/low-volume environments: a case study implementation , 2009 .
[99] Vasco Augusto Sanchez Rodrigues,et al. Synergetic effect of lean and green on innovation: A resource-based perspective , 2020, International Journal of Production Economics.
[100] Jan Ola Strandhagen,et al. Analyzing the factors affecting coordination in engineer-to-order supply chain , 2015 .
[101] Fazleena Badurdeen,et al. Integrating lean and other strategies for mass customization manufacturing: a case study , 2012, J. Intell. Manuf..
[102] Francesco Zammori,et al. 2MTO, a new mapping tool to achieve lean benefits in high-variety low-volume job shops , 2017 .
[103] Mark Stevenson,et al. COBACABANA (Control of Balance by Card Based Navigation): An alternative to kanban in the pure flow shop? , 2015 .
[104] Mustafa Özbayrak,et al. Leanness: experiences from the journey to date , 2005 .
[105] Azharul Karim,et al. A methodology for effective implementation of lean strategies and its performance evaluation in manufacturing organizations , 2013, Bus. Process. Manag. J..
[106] Rafaela Bortolini,et al. Site logistics planning and control for engineer-to-order prefabricated building systems using BIM 4D modeling , 2019, Automation in Construction.
[107] Paolo Trucco,et al. Understanding dynamism and complexity factors in engineer-to-order and their influence on lean implementation strategy , 2016 .
[108] Robert Kagan,et al. Implementing Lean Manufacturing in High-mix Production Environment , 2006, APMS.
[109] Christopher Earl,et al. Modelling supply chain management processes in engineer-to-order companies , 1999 .
[110] Monica Sharma,et al. Lean services: a systematic review , 2016 .
[111] Steve L. Hunter. Ergonomic evaluation of manufacturing system designs , 2001 .
[112] Jan Ola Strandhagen,et al. Operationalizing lean principles for lead time reduction in engineer-to-order (ETO) operations: A case study , 2018 .
[113] Rambabu Kodali,et al. Lean production: literature review and trends , 2015 .
[114] Ann van Ackere,et al. Trading off between heijunka and just-in-sequence , 2009 .
[115] Jannes Slomp,et al. Lean Production Control at a High-Variety, Low-Volume Parts Manufacturer , 2010, Interfaces.
[116] Pamela Mazzocato,et al. Lean thinking in healthcare: a realist review of the literature , 2010, Quality and Safety in Health Care.