Title :
Fuzzy programming model and algorithm for optimal design of distribution centers for B2C e-commerce
Author :
Zhongzhong Jiang ; Dingwei Wang ; Ip, W.H.
Author_Institution :
Northeastern Univ., Shenyang
Abstract :
With respect to the customer characteristics of little demand, multi-commodity, and dispersed location, a fuzzy programming model is proposed to optimize the design of distribution centers for business-to-consumer (B2C) e-commerce, in which a hierarchical agglomerative clustering method is introduced to classify customers and estimate the unit weight fuzzy delivery cost from distribution centers to customers. Both commodity supplies and customer demands in the whole plan period are treated as fuzzy numbers. The model is nonlinear because of the scale-economy effect. Therefore, it is not easy to obtain the optimal solution with conventional methods. The problem is solved firstly, by converting it into a crisp model, followed by the implementation of a genetic algorithm with particle swarm optimization. The computational results on simulative examples have demonstrated the effectiveness and feasibility of the model and algorithm.
Keywords :
electronic commerce; fuzzy set theory; genetic algorithms; goods distribution; particle swarm optimisation; pattern clustering; supply and demand; B2C e-commerce; agglomerative clustering method; business-to-consumer; commodity supplies; customer demands; distribution centers; fuzzy numbers; fuzzy programming model; genetic algorithm; particle swarm optimization; unit weight fuzzy delivery cost; Algorithm design and analysis; Computational modeling; Cost function; Design engineering; Design optimization; Electronic commerce; Fuzzy systems; Genetic algorithms; Logistics; Particle swarm optimization; E-commerce; distribution centers; fuzzy programming; genetic algorithm; particle swarm optimization;
Conference_Titel :
Automation and Logistics, 2007 IEEE International Conference on
Conference_Location :
Jinan
Print_ISBN :
978-1-4244-1531-1
DOI :
10.1109/ICAL.2007.4338815