Title : 
Output Feedback Power-Level Control of MHTGRs: Design with Hardware-in-Loop Verification
         
        
        
            Author_Institution : 
Inst. of Nucl. & New Energy Technol., Tsinghua Univ., Beijing, China
         
        
        
        
        
        
            Abstract : 
Due to the inherent safety feature, the modular high-temperature gas-cooled nuclear reactor (MHTGR) is proper to be utilized to build a new generation of nuclear power plants. Motivated by the large scale closed-loop stability provided by nonlinear controllers, a nonlinear output feedback power-level control based on both the techniques of feedback dissipation and well-established backstepping is given in this paper. The virtue of this controller, i.e. the ability of globally asymptotic stabilization is based on the inherent zero-state detectability property of the dynamics of the MHTGR. This controller is then simplified to a proportional output feedback controller which guarantees strong stability performance if the uncertainty of control rod dynamics is small enough. This simplified power-level controller has chosen to be the practical implementation strategy. Verification results provided by the hardware-in-loop simulation show the feasibility of this simplified control strategy.
         
        
            Keywords : 
closed loop systems; gas cooled reactors; nonlinear control systems; nuclear power stations; power control; power system control; proportional control; MHTGR; backstepping; control rod dynamics; feedback dissipation; globally asymptotic stabilization; hardware-in-loop verification; inherent zero-state detectability property; large scale closed-loop stability; modular high-temperature gas-cooled nuclear reactor; nonlinear controllers; nuclear power plants; output feedback power-level control; proportional output feedback controller; safety feature; Asymptotic stability; Backstepping; Inductors; Output feedback; Stability analysis; Temperature control; Thermal stability;
         
        
        
        
            Conference_Titel : 
Power and Energy Engineering Conference (APPEEC), 2012 Asia-Pacific
         
        
            Conference_Location : 
Shanghai
         
        
        
            Print_ISBN : 
978-1-4577-0545-8
         
        
        
            DOI : 
10.1109/APPEEC.2012.6306975