Multiobjective optimization of evacuation routes in stadium using superposed potential field network Based ACO

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Abstract

Multiobjective evacuation routes optimization problem is defined to find out optimal evacuation routes for a group of evacuees under multiple evacuation objectives. For improving the evacuation efficiency, we abstracted the evacuation zone as a superposed potential field network (SPFN), and we presented SPFN-based ACO algorithm (SPFN-ACO) to solve this problem based on the proposed model. In Wuhan Sports Center case, we compared SPFN-ACO algorithm with HMERP-ACO algorithm and traditional ACO algorithm under three evacuation objectives, namely, total evacuation time, total evacuation route length, and cumulative congestion degree. The experimental results show that SPFN-ACO algorithm has a better performance while comparing with HMERP-ACO algorithm and traditional ACO algorithm for solving multi-objective evacuation routes optimization problem. © 2013 Jialiang Kou et al.

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CITATION STYLE

APA

Kou, J., Xiong, S., Fang, Z., Zong, X., & Chen, Z. (2013). Multiobjective optimization of evacuation routes in stadium using superposed potential field network Based ACO. Computational Intelligence and Neuroscience, 2013. https://doi.org/10.1155/2013/369016

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