
Decision Support for Crew Rostering in Public Transit
Web-Based Optimization System for Cyclic and Non-Cyclic Rostering
Lin Xie(Author)
Springer Gabler (Publisher)
Published on 2. December 2014
Book
Paperback/Softback
XIX, 172 pages
978-3-658-08166-9 (ISBN)
Description
While traditionally sequential approaches have been used to deal with the cyclic/non-cyclic crew rostering problem in public transit, Lin Xie focuses on several solution approaches based on a novel network design to solve this task within one step. This is due to the fact that sequential planning often produces some unassigned duties that require additional drivers to cover them, while some drivers do not get jobs on some days. This integrated approach reduces additional personnel/operational costs and improves the satisfaction of drivers compared with the sequential one. Moreover, the author develops a web-based decision support system, which supports the planner in choosing a customized model as well as a suitable solution approach for solving the problem.
More details
Edition
2015 ed.
Language
English
Place of publication
Wiesbaden
Germany
Publishing group
Springer Fachmedien Wiesbaden GmbH
Target group
Professional and scholarly
Research
Illustrations
74 s/w Abbildungen, 5 farbige Abbildungen
XIX, 172 p. 79 illus., 5 illus. in color.
Dimensions
Height: 210 mm
Width: 148 mm
Thickness: 11 mm
Weight
256 gr
ISBN-13
978-3-658-08166-9 (9783658081669)
DOI
10.1007/978-3-658-08167-6
Schweitzer Classification
Other editions
Additional editions

Lin Xie
Decision Support for Crew Rostering in Public Transit
Web-Based Optimization System for Cyclic and Non-Cyclic Rostering
E-Book
11/2014
1st Edition
Springer Gabler
€53.49
Available for download
Person
Lin Xie holds a doctoral degree from the Faculty of Business Administration and Economics at the University of Paderborn. She is a research associate in the Decision Support & Operations Research Lab at the University of Paderborn.
Content
Cyclic and Non-Cyclic Crew Rostering in Public Transit.- Mathematical Programming and Optimal Crew Rostering.- Column Generation and Metaheuristics for Solving the Crew Rostering Problem.- Web-Based Decision Support System for Crew Rostering.