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Neuro-fuzzy generalized predictive control of boiler steam temperature
作者姓名:Xiangjie LIU  Jizhen LIU  Ping GUAN
作者单位:1.Department of Automation,North China Electric Power University,Beijing 102206,China;2.Department of Automation,Beijing Institute of Machinery,Beijing 100085,China
摘    要:Power plants are nonlinear and uncertain complex systems.Reliable control of superheated steam temper-ature is necessary to ensure high efficiency and high load-following capability in the operation of modern power plant.A nonlinear generalized predictive controller based on neuro-fuzzy network(NFGPC)is proposed in this paper.The proposed nonlinear controller is applied to control the superheated steam temperature of a 200MW power plant.From the experiments on the plant and the simulation of the plant,much better performance than the traditional controller is obtained.

收稿时间:2005/10/14 0:00:00
修稿时间:2006/10/14 0:00:00

Neuro-fuzzy generalized predictive control of boiler steam temperature
Xiangjie LIU,Jizhen LIU,Ping GUAN.Neuro-fuzzy generalized predictive control of boiler steam temperature[J].Journal of Control Theory and Applications,2007,5(1):83-89.
Authors:Xiangjie LIU  Jizhen LIU  Ping GUAN
Affiliation:Department of Automation, North China Electric Power University , Beijing 102206, China;Department of Automation, Beijing Institute of Machinery, Beijing 100085, China
Abstract:Power plants are nonlinear and uncertain complex systems. Reliable control of superheated steam temperature is necessary to ensure high efficiency and high load-following capability in the operation of modern power plant. A nonlinear generalized predictive controller based on neuro-fuzzy network (NFGPC) is proposed in this paper. The proposed nonlinear controller is applied to control the superheated steam temperature of a 200MW power plant. From the experiments on the plant and the simulation of the plant, much better performance than the traditional controller is obtained.
Keywords:Neuro-fuzzy networks  Generalized predictive control  Superheated steam temperature
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