USING MAX-PLUS ALGEBRA IN 2 SIGNALIZED CROSSROADS COORDINATION
Keywords:
koordinace, světelné řízení, Max-plus algebra, křižovatka, ScilabAbstract
The paper deals with the posibility of signalized crossroads coordination using Max-plus algebra. In the first part the problem is defined and a theoretical analysis of Max-plus algebra is given. In the next part of the paper the signalized crossroads coordination based on Max-plus algebra equations is developed. In the final part an evaluation is presented.
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References
(1) Technické podmínky TP 81. Navrhování světelných signalizačních zařízení pro řízení
provozu na pozemních komunikacích. Brno: CDV, Ministerstvo dopravy České republiky,
2006.
(2) ČERNÝ, J., KLUVÁNEK, P. Základy matematickej teórie dopravy. Bratislava: VEDA,
1991. 279 s. ISBN 8022400998.
(3) ANDERSEN, M. H. Max-plus algebra: properties and applications. 2002.
(4) BACELLI, F., COHEN, G., OLSDER, G. J., QUADRAT, J. P. Synchronization
and Linearity. 2001.
(5) Scilab. Dostupné z <http://www.scilab.org>.
provozu na pozemních komunikacích. Brno: CDV, Ministerstvo dopravy České republiky,
2006.
(2) ČERNÝ, J., KLUVÁNEK, P. Základy matematickej teórie dopravy. Bratislava: VEDA,
1991. 279 s. ISBN 8022400998.
(3) ANDERSEN, M. H. Max-plus algebra: properties and applications. 2002.
(4) BACELLI, F., COHEN, G., OLSDER, G. J., QUADRAT, J. P. Synchronization
and Linearity. 2001.
(5) Scilab. Dostupné z <http://www.scilab.org>.
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Published
2011-11-11
How to Cite
Turek, M. (2011). USING MAX-PLUS ALGEBRA IN 2 SIGNALIZED CROSSROADS COORDINATION. Perner’s Contacts, 6(3), 382–390. Retrieved from https://pernerscontacts.upce.cz/index.php/perner/article/view/887
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Copyright (c) 2020 Michal Turek
This work is licensed under a Creative Commons Attribution 4.0 International License.