Industry 4.0 and circular economy: Operational excellence for sustainable reverse supply chain performance

被引:283
作者
Dev, Navin K. [1 ]
Shankar, Ravi [2 ]
Qaiser, Fahham Hasan [3 ]
机构
[1] Dayalbagh Educ Inst, Dept Mech Engn, Agra, Uttar Pradesh, India
[2] Indian Inst Technol Delhi, Dept Management Studies, New Delhi, India
[3] Nottingham Trent Univ, Nottingham Business Sch, Nottingham, England
关键词
Operations excellence; Sustainable reverse supply chain; Industry; 4.0; Circular economy; ReSOLVE model; Family-based scheduling; FUTURE; MANAGEMENT; LOGISTICS; DESIGN; CHALLENGES; STRATEGIES; INVENTORY; CONSUMER; SYSTEMS; IMPACT;
D O I
10.1016/j.resconrec.2019.104583
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The present research proposes a roadmap to the excellence of operations for sustainable reverse supply chain/logistics by the joint implementation of principles of Industry 4.0 (I4.0) and ReSOLVE model of circular economy (CE) approaches. The connection between I4.0 and CE is unveiled by addressing the case-based model affecting the economic and environmental performances imparting two important dimensions: (i) the information sharing with the reverse logistics system is in real-time mode, and (ii) diffusion of green product in the market. The effectiveness of the virtual world in I4.0 environment is explored using simulation of reverse logistics model involving operations such as inventory and production planning policy, family-based dispatching rules of remanufacturing, and additive manufacturing. The remanufacturing model examines the trade-off between set-up delays and the availability of green transportation. For managerial insights, Taguchi experimental design framework has been used for the analysis. Based on the trade-off analysis between environmental and economic performances, the findings of the paper suggest appropriate combinations of information-sharing and family-based dispatching rules. Further, the findings suggest that, given the I4.0 and circular capabilities, it is necessary to focus on the cost of the socially influenced operations involving factors such as collection investment and size of the end-user market that governs the product returns. Therefore, in the present paper, the integration of I4.0 and CE represents a real-time decision model for the sustainable reverse logistics system.
引用
收藏
页数:15
相关论文
共 78 条
[11]  
[Anonymous], IND 4 0 INTERNET THI
[12]  
[Anonymous], CONT FREIGHT STAT TA
[13]  
[Anonymous], CLOUD ERP EV GUID MA
[14]  
[Anonymous], 2012, COMMUNICATIONS MOBIL
[15]   Additive manufacturing impacts on a two-level supply chain [J].
Ashour Pour, Milad ;
Zanoni, Simone ;
Bacchetti, Andrea ;
Zanardini, Massimo ;
Perona, Marco .
INTERNATIONAL JOURNAL OF SYSTEMS SCIENCE-OPERATIONS & LOGISTICS, 2019, 6 (01) :1-14
[16]   Product reuse economics in closed-loop supply chain research [J].
Atasu, Atalay ;
Guide, V. Daniel R., Jr. ;
Van Wassenhove, Luk N. .
PRODUCTION AND OPERATIONS MANAGEMENT, 2008, 17 (05) :483-496
[17]   NEW PRODUCT GROWTH FOR MODEL CONSUMER DURABLES [J].
BASS, FM .
MANAGEMENT SCIENCE SERIES A-THEORY, 1969, 15 (05) :215-227
[18]  
Chukwuekwe D., 2016, ATH EFNMS EUR MAINT
[19]   Computer-Integrated Manufacturing, Cyber-Physical Systems and Cloud Manufacturing - Concepts and relationships [J].
Department of Mechanical Engineering, Zhejiang University, Hangzhou ;
310027, China ;
不详 ;
1142, New Zealand .
Manuf. Let., (5-9) :5-9
[20]   Unlocking value for a circular economy through 3D printing: A research agenda [J].
Despeisse, M. ;
Baumers, M. ;
Brown, P. ;
Charnley, F. ;
Ford, S. J. ;
Garmulewicz, A. ;
Knowles, S. ;
Minshall, T. H. W. ;
Mortara, L. ;
Reed-Tsochas, F. P. ;
Rowley, J. .
TECHNOLOGICAL FORECASTING AND SOCIAL CHANGE, 2017, 115 :75-84