Title :
Power-Level Control of Nuclear Reactors Based on Feedback Dissipation and Backstepping
Author :
Dong, Zhe ; Feng, Junting ; Huang, Xiaojin ; Zhang, Liangju
Author_Institution :
Inst. of Nucl. & New Energy Technol., Tsinghua Univ., Beijing, China
fDate :
6/1/2010 12:00:00 AM
Abstract :
Due to the existing serious climate and environment problems caused by burning fossil fuels, nuclear energy is now under rapid development. As a crucial technology in the field of nuclear energy, power-level control for nuclear power plants is significant for not only regular operating but also safety issues. A nonlinear controller based on feedback dissipation and backstepping (FDBC) is presented in this paper. This new controller can guarantee not only globally closed-loop asymptotic stability but also robustness to the uncertainties of the control rod dynamics. Numerical simulation results show the high performance of this controller. Moreover, this newly built controller is simplified to a proportional power-level controller under the assumption of no modeling error in control rod dynamics. The characteristics of these two power-level controllers are given by theoretic analysis and numerical simulation.
Keywords :
fission reactor core control; fission reactor safety; nuclear power; nuclear power stations; backstepping; closed loop asymptotic stability; control rod dynamics; feedback dissipation; fossil fuel burning; nonlinear controller; nuclear energy; nuclear power plant; nuclear reactor; power level control; safety issues; Asymptotic stability; Backstepping; Feedback; Fission reactors; Fossil fuels; Numerical simulation; Power generation; Proportional control; Robust control; Safety; Backstepping; feedback dissipation; generalized Hamiltonian system; nuclear reactor; power-level control;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2010.2046748