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Fuzzy controller design method for PWR steam generator level control
Duan Suzhen ; Zhang Naiyao ; Cui Zhenhua
2010-05-06 ; 2010-05-06
关键词Practical Theoretical or Mathematical/ boilers fuzzy control level control linear quadratic control nuclear reactor steam generators stability/ fuzzy controller design PWR steam generator level control pressurized-water reactor linear-quadratic regulator nuclear reactor water level controller global fuzzy model linear sub-models linear-quadratic regulators stability response time overshoot time/ A2843B Cooling and heat recovery in fission reactors A2850G Light water reactors B8220B Nuclear reactors C3340F Control of nuclear systems C3120T Level, flow and volume control C1340F Fuzzy control C1330 Optimal control C1320 Stability in control theory E2120 Heat and thermodynamic processes (mechanical engineering) E2310 Power and plant engineering (mechanical engineering) E1550 Control technology and theory E3040 Public utilities
中文摘要A fuzzy controller method was used with a simplified model to design a pressurized-water reactor (PWR) steam generator water level controller. In this method, the global fuzzy model is decomposed into a set of linear sub-models whose linear-quadratic regulators (LQR) can be independently designed, which simplifies the fuzzy controller design. Furthermore, the method gives a sufficient and necessary condition to guarantee the stability of the global fuzzy control systems. Simulation results show that the method provides better control than the hierarchical adaptive fuzzy control scheme, especially on the overshoot and response time.
语种中文 ; 中文
出版者Tsinghua Univ. Press ; China
内容类型期刊论文
源URL[http://hdl.handle.net/123456789/11530]  
专题清华大学
推荐引用方式
GB/T 7714
Duan Suzhen,Zhang Naiyao,Cui Zhenhua. Fuzzy controller design method for PWR steam generator level control[J],2010, 2010.
APA Duan Suzhen,Zhang Naiyao,&Cui Zhenhua.(2010).Fuzzy controller design method for PWR steam generator level control..
MLA Duan Suzhen,et al."Fuzzy controller design method for PWR steam generator level control".(2010).
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