Research on logistics management layout optimization and real-time application based on nonlinear programming

Author:

Zhang Yanqi1,Kou Xiaofei1,Song Zhigang1,Fan Yuqing1,Usman Mohammed2,Jagota Vishal3

Affiliation:

1. School of Management Engineering , Zhengzhou University of Aeronautics , Zhengzhou Henan , , China

2. University of Nizwa , College of Economics Management and Information Systems , Birkat Al Mouz , Sultanate of Oman

3. Department of Mechanical Engineering , Madanapalle Institute of Technology & Science , Madanapalle , AP , India

Abstract

Abstract To solve the problem of long logistics delivery time in supply chain, a Mixed Integer Non-linear Program (MINLP) model is built by using Mixed Integer nonlinear programming theory. Firstly, the General algebraic modeling system (GAMS) is used to build the model to fully integrate each parameter of logistics transportation, the total distribution time of the supply chain network, the coverage radius of the logistics base, the number of users, the total capacity of the logistics base, the mode of railway and road transportation, the nonlinear programming model is built and solved by DICOPT solver in GAMS. The cost of logistics can be decreased, transportation time can be reduced, and the logistics system's operating efficiency can be increased in the long term with the help of this algorithm. The proper operation of the logistics system is critical in encouraging the supply chain circulation of various industries and has a direct impact on the society's economic development. The optimal logistics distribution plan with 5 logistics bases covered users of 18 and railway capacity of 2. With the same railway capacity and the same total budget, the larger the number of covered users, the greater the total distribution time increases, but the larger the total budget, the growth of the total distribution time slows down significantly. Experiments show that MINLP model can solve the problem of logistics-based layout optimization in nonlinear logistics management.

Publisher

Walter de Gruyter GmbH

Subject

Computer Networks and Communications,General Engineering,Modeling and Simulation,General Chemical Engineering

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