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A Modified Harmony Search Algorithm for Solving the Dynamic Vehicle Routing Problem with Time Windows
Author(s) -
Shifeng Chen,
Rong Chen,
Jian Gao
Publication year - 2017
Publication title -
scientific programming
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.269
H-Index - 36
eISSN - 1875-919X
pISSN - 1058-9244
DOI - 10.1155/2017/1021432
Subject(s) - harmony search , vehicle routing problem , computer science , mathematical optimization , benchmark (surveying) , premature convergence , algorithm , population , routing (electronic design automation) , mathematics , artificial intelligence , particle swarm optimization , computer network , demography , geodesy , sociology , geography
The Vehicle Routing Problem (VRP) is a classical combinatorial optimization problem. It is usually modelled in a static fashion; however, in practice, new requests by customers arrive after the initial workday plan is in progress. In this case, routes must be replanned dynamically. This paper investigates the Dynamic Vehicle Routing Problem with Time Windows (DVRPTW) in which customers’ requests either can be known at the beginning of working day or occur dynamically over time. We propose a hybrid heuristic algorithm that combines the harmony search (HS) algorithm and the Variable Neighbourhood Descent (VND) algorithm. It uses the HS to provide global exploration capabilities and uses the VND for its local search capability. In order to prevent premature convergence of the solution, we evaluate the population diversity by using entropy. Computational results on the Lackner benchmark problems show that the proposed algorithm is competitive with the best existing algorithms from the literature

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