Books
- Peter Buchholz, Jan Kriege, Iryna Felko:
Input Modeling with Phase Type Distributions and Markov Models - Theory and Applications
SpringerBriefs in Mathematics, 2014.
Journal & Conference Articles
- D. Scheftelowitsch, P. Buchholz and I.Dohndorf:
Efficient Policy Iteration on Modern Computing Architectures
2018, in work
A Multi-Objective Approach for PH-Graphs with Applications to Stochastic Shortest Paths
2018, submitted
- P. Buchholz, I. Dohndorf, D.Scheftelowitsch:
Time-Based Maintenance Models under Uncertainty
2017. Online Companion
- P. Buchholz, I. Dohndorf, A. Frank, D.Scheftelowitsch:
Bounded Aggregation for Continuous Time Markov Decision Processes
EPEW, 2017.
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P. Buchholz, I. Dohndorf, D.Scheftelowitsch:
Analysis of Markov Decision Processes under Parameter Uncertainty
EPEW, 2017. Online Companion
- P. Buchholz, I. Dohndorf, D.Scheftelowitsch:
Optimal Decisions for Continuous Time Markov Decision Processes over Finite Planning Horizons
Computers & Operations Research, 2016.
- P. Buchholz, I. Dohndorf, J. Kriege, G. Rinkenauer:
Modeling Human Decisions in Performance and Dependability Models
EPEW 2016.
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P. Buchholz, I. Felko:
PH-graphs for Analyzing Shortest Path Problems with Correlated Traveling Times
Computers & Operations Research, 2015, 51-65.
- P. Buchholz, I. Felko, and J. Kriege:
Transformation of Acyclic Phase Type Distributions for Correlation Fitting
20th International Conference on Analytical and Stochastic Modelling Techniques and Applications (ASMTA), Springer LNCS 7984, 2013, 96-111.
- Iryna Felko:
Simulation-based deadlock avoidance and optimization in bidirectional AGVS
Proc. of the 4th International Conference on Simulation Tools and Techniques for Communications, Networks and Systems (SIMUTools 2011), Barcelona, 2011.
Theses
Stochastic Graph Models with Phase Type Distributed Edge Weights
Dissertation, Technische Universität Dortmund, Fakultät für Informatik, Dortmund, 2017
Ein Optimierungsverfahren zur Deadlockvermeidung in fahrerlosen Transportsystemen
Diplomarbeit, Technische Universität Dortmund, Fraunhofer Institut für Materialfluss und Logistik (IML), Dortmund, 2010