吉林大学学报(工学版) ›› 2011, Vol. 41 ›› Issue (增刊2): 122-125.

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Analysis of network layout optimization problem for vehicle detection station in random environment

TIAN Guang-dong1, LIU Yu-mei1, XU Guan1, DAI Jiang-yue2, REN Hong-guang3   

  1. 1. College of Transportation, Jilin University, Changchun 130022, China;
    2. Bureau of Transportation and Management, Jinzhou 121000, China;
    3. Public Security Bureau of Changchun City, Changchun 130000, China
  • Received:2010-03-28 Online:2011-09-30 Published:2011-09-30

Abstract:

Taking into account of the impact of uncertain factors,the random network layout problem of vehicle detection station is introduced to describe actual circumstances.In addition,taking into account of the impact of range constraints,stochastic chance-constrain programming models of non-range constraint location and range constraint location for vehicle detection station are established.Simultaneously,the genetic algorithm based on stochastic simulation is used to solve established models.Finally,a numerical example is given to show feasibility of models and effectiveness of algorithm.

Key words: engineering of communications and transportation system, vehicle detection station, stochastic chance-constrain programming, network layout optimization problem

CLC Number: 

  • U115


[1] Aikens C H.Facility location models for distributionp lanning
[J].European Journal of Operational Research,1985,22(2):263-279.

[2] 曹学明,王喜富.区域多机场系统机场选址模型研究
[J].交通运输系统工程与信息,2010,10(1):117-121. Cao Xue-ming,Wang Xi-fu.Bi-Level programmingm odel for airport location in the multi-airport region
[J].Journal of Transportation Systems Engineeringa nd Information Technology,2010,10(1):117-121.

[3] 任鸣鸣,杨超,何波.需求不确定状态下的工厂选址 和规模决策的综合优化方法
[J].系统工程,2007,25(6):1-3. Ren Ming-ming,Yang Chao,He Bo.An integratedo ptimal approach for facility location and its size decision with uncertain demand
[J].Systems Engineering,2007,25(6):1-3.

[4] Liu B.Theory and Practice of Uncertain Programming
[M].Physica-Verlag,Heidelberg,2002.

[5] Charnes A,Cooper W.Chance-constrained programming
[J].Manag Sci,1959,6(1):73-79.

[6] Peer S K,Sharma D K.Finding the shortest path ins tochastic networks
[J].computers and Mathematicsw ith Applications,2007,53:729-740.

[7] Ji X Y.Models and algorithm for stochastic shortestp ath problem
[J].Applied Mathematics and compu-t ation,2005,170:503-514.

[8] 计小宇,邵震.基于不确定规划的供应链网络设计模 型与算法
[J].系统工程理论与实践,2007(2):118- 122.Ji Xiao-yu,Shao Zhen.Model and algorithm for supply chain network design by uncertain programming
[J].Systems Engineering Theory&Practice,2007(2):118-122.

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