scholarly journals A review on optimisation of part quality inspection planning in a multi-stage manufacturing system

2018 ◽  
Vol 57 (15-16) ◽  
pp. 4880-4897 ◽  
Author(s):  
Mohammad Rezaei-Malek ◽  
Mehrdad Mohammadi ◽  
Jean-Yves Dantan ◽  
Ali Siadat ◽  
Reza Tavakkoli-Moghaddam
Author(s):  
Mohammed Alkahtani ◽  
Muhammad Omair ◽  
Qazi Salman Khalid ◽  
Ghulam Hussain ◽  
Imran Ahmad ◽  
...  

The management of a controllable production in the manufacturing system is essential to achieve viable advantages, particularly during emergency conditions. Disasters, either man-made or natural, affect production and supply chains negatively with perilous effects. On the other hand, flexibility and resilience to manage the perpetuated risks in a manufacturing system are vital for achieving a controllable production rate. Still, these performances are strongly dependent on the multi-criteria decision making in the working environment with the policies launched during the crisis. Undoubtedly, health stability in a society generates ripple effects in the supply chain due to high demand fluctuation, likewise due to the Coronavirus disease-2019 (COVID-19) pandemic. Incorporation of dependent demand factors to manage the risk from uncertainty during this pandemic has been a challenge to achieve a viable profit for the supply chain partners. A non-linear supply chain management model is developed with a controllable production rate to provide an economic benefit to the manufacturing firm in terms of the optimized total cost of production and to deal with the different situations under variable demand. The costs in the model are set as fuzzy to cope up with the uncertain conditions created by lasting pandemic. A numerical experiment is performed by utilizing the data set of the multi-stage manufacturing firm. The optimal results provide support for the industrial managers based on the proactive plan by the optimal utilization of the resources and controllable production rate to cope with the emergencies in a pandemic.


2005 ◽  
Vol 37 (12) ◽  
pp. 1093-1105 ◽  
Author(s):  
Robin Roundy ◽  
Dietrich Chen ◽  
Pan Chen ◽  
Metin Çakanyildirim ◽  
Michael B. Freimer ◽  
...  

2007 ◽  
Vol 1 (1) ◽  
pp. 52-60
Author(s):  
Tauseef Aized ◽  
◽  
Koji Takahashi ◽  
Ichiro Hagiwara ◽  

The objective of this study is to analyse an integrated Automated Guided Vehicle System (AGVS) which is embedded in a pull type multi-product, multi-stage and multi-line flexible manufacturing system (FMS). The analysis is carried out through the development of different guide path configurations. Three guide-path configurations are developed to add flexibility gradually in the AGVS and the impact of added flexibility is studied by examining the performance of the system. The study uses coloured Petri net methodology to model the system and the simulation results lead to decrease the number of automated guided vehicles and hence the overall cost of the system.


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