Real Time Emotional Control for Anti-Swing and Positioning Control of SIMO Overhead Traveling Crane
Jamali MR, Arami A, Hosseini B, Moshiri B, Lukas C (2008)
International Journal of Innovative Computing, Information, and Control 4(9): 2333-2344.
Zeitschriftenaufsatz
| Veröffentlicht | Englisch
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Autor*in
Jamali, Mohammad Reza;
Arami, Arash;
Hosseini, BabakUniBi ;
Moshiri, Behzad;
Lukas, Caro
Einrichtung
Abstract / Bemerkung
Research in artificial intelligence and bioinspired algorithms is still being ac-
tively pursued in different fields of engineering. In this work, Brain Emotional Learning
Based Intelligent Controller (BELBIC) is applied for real time positioning of laboratorial
overhead travelling crane. This controller is based on biologically motivated algorithm
originating from emotional processes in the limbic system of the mammalian brain. Sim-
ulations show that learning capability, adaptation, robustness and other control concerns
of this controller are comparable with conventional techniques which lead to better per-
formance in many cases. Two objectives, tracking desired position and keeping pendulum
vertically, must be considered simultaneously. The bottom up strategy was utilized for
designing the controllers. First separated BELBIC was designed for each control task.
Next, in order to suppose the real coupling between control tasks, the objective of each
control tasks was considered in the stress signal of the other one. Obtained results in
real tracking applications are also comparable with other conventional and intelligent ap-
proaches such as hierarchical fuzzy control (HFLC) and confirm the simulation results.
Learning capability, model free control algorithm, robustness and fast response are main
characteristics of this controller and designer can define emotional stress signal based on
control application objectives.
Stichworte
BELBIC;
Model Free Control;
HFLC;
PID Controller
Erscheinungsjahr
2008
Zeitschriftentitel
International Journal of Innovative Computing, Information, and Control
Band
4
Ausgabe
9
Seite(n)
2333-2344
ISSN
1349-4198
Page URI
https://pub.uni-bielefeld.de/record/2914988
Zitieren
Jamali MR, Arami A, Hosseini B, Moshiri B, Lukas C. Real Time Emotional Control for Anti-Swing and Positioning Control of SIMO Overhead Traveling Crane. International Journal of Innovative Computing, Information, and Control. 2008;4(9):2333-2344.
Jamali, M. R., Arami, A., Hosseini, B., Moshiri, B., & Lukas, C. (2008). Real Time Emotional Control for Anti-Swing and Positioning Control of SIMO Overhead Traveling Crane. International Journal of Innovative Computing, Information, and Control, 4(9), 2333-2344.
Jamali, Mohammad Reza, Arami, Arash, Hosseini, Babak, Moshiri, Behzad, and Lukas, Caro. 2008. “Real Time Emotional Control for Anti-Swing and Positioning Control of SIMO Overhead Traveling Crane”. International Journal of Innovative Computing, Information, and Control 4 (9): 2333-2344.
Jamali, M. R., Arami, A., Hosseini, B., Moshiri, B., and Lukas, C. (2008). Real Time Emotional Control for Anti-Swing and Positioning Control of SIMO Overhead Traveling Crane. International Journal of Innovative Computing, Information, and Control 4, 2333-2344.
Jamali, M.R., et al., 2008. Real Time Emotional Control for Anti-Swing and Positioning Control of SIMO Overhead Traveling Crane. International Journal of Innovative Computing, Information, and Control, 4(9), p 2333-2344.
M.R. Jamali, et al., “Real Time Emotional Control for Anti-Swing and Positioning Control of SIMO Overhead Traveling Crane”, International Journal of Innovative Computing, Information, and Control, vol. 4, 2008, pp. 2333-2344.
Jamali, M.R., Arami, A., Hosseini, B., Moshiri, B., Lukas, C.: Real Time Emotional Control for Anti-Swing and Positioning Control of SIMO Overhead Traveling Crane. International Journal of Innovative Computing, Information, and Control. 4, 2333-2344 (2008).
Jamali, Mohammad Reza, Arami, Arash, Hosseini, Babak, Moshiri, Behzad, and Lukas, Caro. “Real Time Emotional Control for Anti-Swing and Positioning Control of SIMO Overhead Traveling Crane”. International Journal of Innovative Computing, Information, and Control 4.9 (2008): 2333-2344.
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