A literature review of energy waste in the manufacturing industry
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[1] Hélio Yochihiro Fuchigami,et al. An efficiency and robustness analysis of warm-start mathematical models for idle and waiting times optimization in the flow shop , 2022, Computers & Industrial Engineering.
[2] Guo-Sheng Liu,et al. Dynamic real–time abnormal energy consumption detection and energy efficiency optimization analysis considering uncertainty , 2022, Applied Energy.
[3] Thomy Eko Saputro,et al. A comprehensive framework and literature review of supplier selection under different purchasing strategies , 2022, Comput. Ind. Eng..
[4] H. Azadi,et al. Rice production energy efficiency evaluation in north of Iran; application of Robust Data Envelopment Analysis , 2022, Cleaner Engineering and Technology.
[5] J. Wiciak,et al. Identification of energy wastes through sound analysis in compressed air systems , 2022, Energy.
[6] Izaskun Alvarez-Meaza,et al. Green scheduling to achieve green manufacturing: Pursuing a research agenda by mapping science , 2021, Technology in Society.
[7] E. B. Bani Hani,et al. Exergy, economic, and optimization of a clean hydrogen production system using waste heat of a steel production factory , 2021, International Journal of Hydrogen Energy.
[8] Sergio Mario Camporeale,et al. Fast Design Procedure for Turboexpanders in Pressure Energy Recovery Applications , 2020, Energies.
[9] Qinghua Zhu,et al. Sustainable design for users: a literature review and bibliometric analysis , 2020, Environmental Science and Pollution Research.
[10] Harwati,et al. The implementation of green lean manufacturing in small scale industry: Reduction energy waste and emission , 2019, IOP Conference Series: Materials Science and Engineering.
[11] Yingfeng Zhang,et al. A cloud service platform integrating additive and subtractive manufacturing with high resource efficiency , 2019, Journal of Cleaner Production.
[12] Lei Wang,et al. Integrated green scheduling optimization of flexible job shop and crane transportation considering comprehensive energy consumption , 2019, Journal of Cleaner Production.
[13] Guo-Sheng Liu,et al. Minimizing Total Idle Energy Consumption in the Permutation Flow Shop Scheduling Problem , 2018, Asia Pac. J. Oper. Res..
[14] D. Borge-Diez,et al. Management tool to optimize energy and water consumption in the sanitary-ware industry , 2018, Journal of Cleaner Production.
[15] Qinghua Zhu,et al. Green supply chain management and the circular economy , 2018, International Journal of Physical Distribution & Logistics Management.
[16] Le Cao,et al. Optimal maintenance control of machine tools for energy efficient manufacturing , 2018, The International Journal of Advanced Manufacturing Technology.
[17] Andrew A. West,et al. An intelligent real-time cyber-physical toolset for energy and process prediction and optimisation in the future industrial Internet of Things , 2018, Future Gener. Comput. Syst..
[18] Hadi Mokhtari,et al. An energy-efficient multi-objective optimization for flexible job-shop scheduling problem , 2017, Comput. Chem. Eng..
[19] Yuebin Guo,et al. Energy consumption in machining: Classification, prediction, and reduction strategy , 2017 .
[20] Mariano Frutos,et al. The Non-Permutation Flow-Shop scheduling problem: A literature review , 2017, Omega.
[21] Jorge Arinez,et al. Data-driven modeling and real-time distributed control for energy efficient manufacturing systems , 2017 .
[22] Alessandra Caggiano,et al. Sustainability Enhancement of a Turbine Vane Manufacturing Cell through Digital Simulation-Based Design , 2016 .
[23] Yun Zhang,et al. Application of cleaner production in a Chinese magnesia refractory material plant , 2016 .
[24] Axel Tuma,et al. Energy-efficient scheduling in manufacturing companies: A review and research framework , 2016, Eur. J. Oper. Res..
[25] Ying Liu,et al. Experimental study on energy consumption of computer numerical control machine tools , 2016 .
[26] Chaoyong Zhang,et al. A multi-objective teaching−learning-based optimization algorithm to scheduling in turning processes for minimizing makespan and carbon footprint , 2015 .
[27] Giuliano Bissacco,et al. Real time power consumption monitoring for energy efficiency analysis in micro EDM milling , 2015 .
[28] Stefan Velchev,et al. Empirical models for specific energy consumption and optimization of cutting parameters for minimizing energy consumption during turning , 2014 .
[29] Ivan Zupic,et al. Bibliometric Methods in Management and Organization , 2014 .
[30] Paul Mativenga,et al. Critical factors in energy demand modelling for CNC milling and impact of toolpath strategy , 2014 .
[31] Gianni Campatelli,et al. Optimization of process parameters using a Response Surface Method for minimizing power consumption in the milling of carbon steel , 2014 .
[32] Yan He,et al. An on-line approach for energy efficiency monitoring of machine tools , 2012 .
[33] Jorge Xiberta Bernat,et al. Steel mill slags energy potential: the case of the steel factory of Arcelor-Mittal in Asturias (Spain) , 2012, Clean Technologies and Environmental Policy.
[34] John W. Sutherland,et al. A new approach to scheduling in manufacturing for power consumption and carbon footprint reduction , 2011 .
[35] Jose M. Framiñan,et al. Review and classification of hybrid flow shop scheduling problems from a production system and a solutions procedure perspective , 2010, Comput. Oper. Res..
[36] Farid Chejne,et al. Energy Management by Variable Monitoring, Specific Case Industrias Elimenticias Noel S.A. Zenú Plant , 2003 .
[37] M. Callon,et al. From translations to problematic networks: An introduction to co-word analysis , 1983 .
[38] Henry G. Small,et al. Co-citation in the scientific literature: A new measure of the relationship between two documents , 1973, J. Am. Soc. Inf. Sci..
[39] E. Trist,et al. Some Social and Psychological Consequences of the Longwall Method of Coal-Getting , 1951 .
[40] D. Gryboś,et al. Implementation of Energy Harvesting System of Wastes of Compressed Air Wastes for Electrical Steel Cutting Line , 2019, E3S Web of Conferences.
[41] Xiuli Wu,et al. A green scheduling algorithm for flexible job shop with energy-saving measures , 2018 .
[42] Tobias Bestari Tjandra,et al. Finding Hotspots of Thermal Energy Waste: Modelling the Energy Balance of a Noodle Production System☆ , 2016 .
[43] Bertrand M. T. Lin,et al. Parallel-machine scheduling to minimize tardiness penalty and power cost , 2013, Comput. Ind. Eng..
[44] M. Yildirim,et al. Wichita State University Libraries SOAR : Shocker Open Access Repository , 2011 .
[45] Oliver L. Clarke,et al. Don't Even Say Energy Conservation–It's “Energy Productivity” , 2005 .