Iterated Local Search for the examination timetabling problem with constructive-based initial solution
Synim Selimi, Labeat Arbneshi, Kadri Sylejmani and Nysret Musliu
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1 - 8 |
Multi-neighbourhood Simulated Annealing for the Capacitated University Examination Timetabling Problem (ITC-2007)
David Van Bulck, Dries Goossens and Andrea Schaerf
|
9 - 11 |
Improving the Dynamic Programming Algorithm for Nurse Rostering
Jeffrey H. Kingston
|
12 - 25 |
Predicting nurse rosters with machine learning techniques
Shayekh Hassan, Nadia Cissen and Leendert Kok
|
26 - 29 |
A proven optimal result for a benchmark dataset of the Uncapacitated Examination Timetabling Problem
Angelos Dimitsas, Vasileios Nastos, Christos Valouxis, Panayiotis Alefragis and Christos Gogos
|
30 - 46 |
Exam Scheduling with Hardship Minimization
Donovan Hare and Stephanie Hamilton
|
47 - 75 |
Scheduling Worker Timetables in Flowshops with Multi-Skill Workers
Ehud Ikar, Elad Shufan, Hagai Ilani and Tal Grinshpoun
|
76 - 76 |
A knowledge-based approach to detecting and explaining conflicts in timetabling problems
Kylian Van Dessel and Joost Vennekens
|
77 - 82 |
A Column Generation Approach for Solving the Fixed Route Dial-A-Ride Problem
Hagai Ilani, Elad Shufan and Tal Grinshpoun
|
83 - 83 |
Local Search Techniques for a Medical Student Scheduling Problem
Eugeniza Zanazzo, Sara Ceschia, Agostino Dovier and Andrea Schaerf
|
84 - 87 |
Shift Scheduling in Interdependent Multi-stage Systems with Reallocation of Workforce
Seyed Mohammad Zenouzzadeh and Raik Stolletz
|
88 - 88 |
Enhancing Security via Deliberate Unpredictability of Solutions in Optimisation
Daniel Karapetyan and Andrew Parkes
|
89 - 94 |
Scheduling of an underground mine by combining logic-based Benders decomposition and a priority-based heuristic
Emil Lindh, Kim Olsson and Elina Rönnberg
|
95 - 114 |
Solving an Industrial Oven Scheduling Problem with a Simulated Annealing Approach
Marie-Louise Lackner, Nysret Musliu and Felix Winter
|
115 - 120 |
Scheduling Satellite Timetables using DCOP
Shai Krigman, Tal Grinshpoun and Lihi Dery
|
121 - 137 |
A Constraint Language For University Timetabling Problems
Vincent Barichard, Corentin Behuet, David Genest, Marc Legeay and David Lesaint
|
138 - 162 |
Three-phase Curriculum Based University Course Timetabling
Elmar Steiner, Ulrich Pferschy and Andrea Schaerf
|
163 - 181 |
Planning for high-speed railways in the Czech Republic
Pavel Dostál, Hana Rudová and Vilém Pařil
|
182 - 187 |
An iterative approach for the Mobile Workforce Tactical Scheduling Problem with Frequency Constraints and Workload Balancing
Anne-Laurence Hulot, Stéphane Dauzere-Peres, Chloé Desdouits, Dominique Feillet
|
188 - 191 |
Grouping and timetabling for multi-league sports competitions
Miao Li and Dries Goossens
|
192 - 194 |
A Pragmatic Approach for Solving the Sports Scheduling Problem
Angelos Dimitsas, Christos Gogos, Christos Valouxis, Alexandros Tzallas and Panayiotis Alefragis
|
195 - 207 |
Integer Programming Formulations for Compact Single Round Robin Tournaments
Jasper van Doornmalen, Christopher Hojny, Roel Lambers and Frits Spieksma
|
208 - 210 |
Timetabling Research: A Progress Report
Jeffrey H. Kingston
|
211 - 221 |
Design of an Exact Approach for Timetabling at Project-Oriented Schools
Michael Hölscher
|
222 - 224 |
Modeling and Methods in Untis, a Popular Software System for School Timetabling
Sebastian Knopp
|
225 - 226 |
International Timetabling Competition 2021: Sports Timetabling
Dries Goossens, Jeroen Beliën, Morteza Davari and David Van Bulck
|
227 - 233 |
Real-world university course timetabling at the International Timetabling Competition 2019
Hana Rudová, Tomáš Müller and Zuzana Müllerová
|
234 - 238 |
A MIP based approach for International Timetabling Competation 2019
Dennis Holm, Rasmus Ørnstrup Mikkelsen, Matias Sørensen and Thomas Stidsen
|
239 - 242 |
ITC 2019: Results Using the UniTime Solver
Tomáš Müller
|
243 - 247 |
Towards A Unified Timetabling Model
Jeffrey H. Kingston
|
248 - 255 |
Sustainable energy aware industrial production scheduling
Panayiotis Alefragis, Konstantinos Plakas, Iwannis Karampinis, Christos Valouxis, Michael Birbas, Alexios Birbas and Christos Gogos
|
256 - 264 |
On the call intake process in service planning (corrigendum) (old version)
Gerhard Post and Stefan Mijsters
|
265 - 278 |
Optimising Scheduling of Hybrid Learning using Mixed Integer Programming
Matthew Davison, Ahmed Kheiri and Konstantinos Zografos
|
279 - 286 |