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Optimization Methods Principles

Summary

Course includes linear programming methods with one and more criteria, fuzzy linear programming methods, nonlinear programming methods, dynamic programming methods, compromis, composit and goal programming methods.

Literature

BELLMANN, R., E.: Applied Dynamic programming. Princeton University Press, 2016. ISBN 978-06-916-2542-3 
JONES, D.; TAMIZ, M.: Practical Goal Programming. London: Springer, 2010. ISBN 978-1-4419-5770-2 
KAUR, J.; KUMAR, A.: An Introduction to Fuzzy Linear Programming Problems. Springer, 2016. ISBN 978-3-319-31274-3 
SINHA, S., M.: Mathematical Programming - Theory and Methods. Elsevier, 2005. ISBN 978-00-805-3593-7 
SHIMIZU, K.; ISHIZUKA, Y.; JONATHAN, F.: Nondifferentiable and Two-Level Mathematical Programming. Springer, 1997. ISBN 978-1-4615-6305-1 

Doporučená literatura

APT, K., R.: Principles of Constraint Programming. Cambridge University Press, 2003. ISBN 978-05-211-2549-9 
FAIGLE, U.; KERN, W.; STILL, G.: Algorithmic Principles of Mathematical Programming. Springer, 2002. ISBN 978-14-020-0852-8 
NOVÁK, V.; PERFILIEVA, I.; MOČKOŘ, J.: Mathematical Principles of Fuzzy Logic. Boston: Kluwer Academic Publishers, 1999. ISBN 978-1-4615-5217-8 


Language of instruction čeština, angličtina
Code 342-0961
Abbreviation POM
Course title Optimization Methods Principles
Coordinating department Institute of Transport
Course coordinator doc. Ing. Dušan Teichmann, Ph.D.