DocumentCode :
1139133
Title :
A Model Predictive Controller for Load-Following Operation of PWR Reactors
Author :
Na, Man Gyun ; Jung, Dong Won ; Shin, Sun Ho ; Jang, Jin Wook ; Lee, Ki Bog ; Lee, Yoon Joon
Author_Institution :
Dept. of Nucl. Eng., Chosun Univ., Gwangju, South Korea
Volume :
52
Issue :
4
fYear :
2005
Firstpage :
1009
Lastpage :
1020
Abstract :
The basic concept of a model predictive control method is to solve on-line, at each time step, an optimization problem for a finite future interval and to implement only the first optimal control input as the current control input. It is a suitable control strategy for time-varying systems, in particular, because the parameter estimator identifies a controller design model recursively at each time step, and also the model predictive controller recalculates an optimal control input at each time step by using newly measured signals. The proposed controller is applied to the integrated power level and axial power distribution controls for a Korea Standard Nuclear Power Plant (KSNP). The power level and the axial shape index are controlled by two kinds of the five regulating control rod banks and the two part-strength control rod banks together with the automatic adjustment of boric acid concentration. The three-dimensional reactor analysis code, Multipurpose Analyzer for Static and Transient Effects of Reactor, which models the KSNP, is interfaced to the proposed controller to verify the proposed controller for controlling the reactor power level and the axial shape index. It is known from numerical simulations that the proposed controller exhibits very fast tracking responses.
Keywords :
fission reactor coolants; fission reactor core control; fission reactor safety; fission reactor theory; nuclear engineering computing; nuclear power stations; numerical analysis; optimal control; predictive control; time-varying systems; Korea Standard Nuclear Power Plant; PWR reactors; axial power distribution control; axial shape index; boric acid concentration; controller design model; integrated power level control; load-following operation; model predictive controller; multipurpose analyzer; numerical simulation; optimal control input; optimization problem; parameter estimator; part-strength control rod banks; reactor core control; regulating control rod banks; safe operation; static effects; three-dimensional reactor analysis code; time-varying systems; transient effects; Automatic control; Current control; Inductors; Optimal control; Optimization methods; Power system modeling; Predictive control; Predictive models; Shape control; Time varying systems; Load-following operation; model predictive control; parameter estimation;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2005.852651
Filename :
1495798
Link To Document :
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