Stock redistribution in two-echelon logistics systems

1998 ◽  
Vol 49 (9) ◽  
pp. 966-975 ◽  
Author(s):  
L P Bertrand ◽  
J H Bookbinder
Keyword(s):  
2004 ◽  
Vol 23 (1) ◽  
pp. 15-27
Author(s):  
Jason C.H. Chen ◽  
Binshan Lin ◽  
Lingli Li ◽  
Patty S. Chen

Chinese businesses began with a weak foundation in the intense world trade environment, similar to the many other companies that grew from developing countries. How were these Chinese businesses able to compete with foreign competitors armed with strong capital structures and efficient communication networks? Haier is an excellent example of how Chinese companies have successfully adapted to and prospered in the global economy, using information technology as a strategic weapon to improve its competitive advantage and further to create collaborative advantage. Haier's growth is miraculous: in less than two decades, it grew from a state-owned refrigerator factory into an innovative international giant. The company has become China's first global brand and the fifth largest appliance seller in the world. What are the secrets of Haier's success? Many researchers have conducted extensive studies on Haier's management and found the key is Management Information Systems such as e-Commerce and logistics systems that improve business operations between its suppliers, customers, and business partners. This article recounts the journey of Haier's achievements to excellence through its MIS, and provides analyses of the company's business model, the market chain management model.


Procedia CIRP ◽  
2021 ◽  
Vol 99 ◽  
pp. 116-121
Author(s):  
Khurshid Aliev ◽  
Emiliano Traini ◽  
Mansur Asranov ◽  
Ahmed Awouda ◽  
Paolo Chiabert

2021 ◽  
Vol 113 ◽  
pp. 103947
Author(s):  
Dongjun Guo ◽  
Yicun Chen ◽  
Jingsheng Yang ◽  
Yoong Heng Tan ◽  
Chenhao Zhang ◽  
...  
Keyword(s):  

2021 ◽  
Vol 13 (4) ◽  
pp. 2021
Author(s):  
Vlado Popović ◽  
Milorad Kilibarda ◽  
Milan Andrejić ◽  
Borut Jereb ◽  
Dejan Dragan

Sustainable engineering is very important for logistics systems. Nowadays, sustainable warehouse management is a key factor in market success. Workforce fluctuation and inverting the number of customers’ demands make a lot of problems in distribution warehouses. This study addresses a sustainable approach for the workforce scheduling problem recognized in a real distribution warehouse. The problem arises from the high variability of demand for workers over one workday, which causes workforce surplus in some periods of the workday and shortages in others. Engineering managers of the distribution warehouse already use different full-time and part-time shifts, and schedule workers on different activities, but they still have significant workforce surpluses or shortages in some periods. This study proposes the scheduling of activities’ execution together with workers to face that variability and decrease the cost of the workforce. This idea comes from the fact that some activities in a distribution warehouse can be done in a specific time period after the need for them occurs. In this way, the variability of demand for workers can be decreased, and a lower workforce cost may be ensured. Based on this idea, the entire problem is modeled as integer linear programming. The real example of the problem is solved, and the proposed model is tested on randomly generated instances of the problem in Python by means of the PuLP linear programming package. The results indicate different positive effects in the manner of sustainable warehouse management: lower workforce costs, time savings, better utilization of all types of resources and equipment, increased employee satisfaction, and so on. For even 61% of instances of the introduced problem, the obtained cost of the workforce is lower by more than 20% if activities’ executions are scheduled together with employees.


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