4.4 Article

Time-dependent transportation network design that considers health cost

Journal

TRANSPORTMETRICA A-TRANSPORT SCIENCE
Volume 11, Issue 1, Pages 74-101

Publisher

TAYLOR & FRANCIS LTD
DOI: 10.1080/23249935.2014.927938

Keywords

artificial bee colony algorithm; time-dependent transportation network design; consumer surplus; health cost; discrete network design

Funding

  1. University Research Committee and Faculty of Engineering Top-up Grant of the University of Hong Kong [201011159026, 201211159009]
  2. National Natural Science Foundation of China [71271183]

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This paper proposes a bi-level optimisation framework for time-dependent discrete road network design that considers health impacts. A general health cost function is proposed and captured in the framework. The function simultaneously considers the health impacts of road traffic emissions, noise, and accidents due to network expansion. To solve the problem, the artificial bee colony (ABC) algorithm is proposed to search the network design solutions of the upper-level problem, while the method of successive averages and the Frank-Wolfe algorithm are adopted to solve the lower-level time-dependent land-use transportation problem. A repairing procedure is proposed to remedy infeasible solutions. A numerical study is set up to illustrate the conflict between maximising consumer surplus and minimising the health cost. This paper also reveals a paradox phenomenon that with an increasing amount of emissions, the health cost decreases. Moreover, the existence of a health inequity between different residential zones is demonstrated. A modified Sioux Falls network is adopted to show the performance of the solution algorithm as well as the effectiveness of the proposed repairing procedure.

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