DocumentCode :
3601522
Title :
Generic Nonsmooth mathcal {H}_{\\infty } Output Synthesis: Application to a Coal-Fired Boiler/Turbine Unit With Actuator Dead Zone
Author :
Ponce, Israel U. ; Bentsman, Joseph ; Orlov, Yury ; Aguilar, Luis T.
Author_Institution :
Dept. of Electron. & Telecommun., Centro de Investig. Cienc. y de Educ. Super. de Ensenada, Ensenada, Mexico
Volume :
23
Issue :
6
fYear :
2015
Firstpage :
2117
Lastpage :
2128
Abstract :
Actuator nonidealities, such as backlash, dead zone, and others, present in a number of industrial systems, are known to severely degrade system performance. Providing nonconservative closed-loop robust performance guarantees for these systems in a consistent manner has been an open problem. For example, in boiler/turbine units, the turbine valve position actuation for manipulating steam flow rate is characterized by a small mismatch between the turbine valve command and the actual valve position, producing a small steady-state regulation error in the plant outputs. The standard linear Hcontroller designed to provide zero steady-state error regulation drives this error to zero, producing the undesirable oscillations in the control signals and the plant outputs. This paper develops a nonsmooth Houtput regulator theory addressing this problem and applies this theory to the experimentally validated boiler/turbine model with actuator dead zone. The simulation results showing a considerable performance improvement are given.
Keywords :
H control; actuators; boilers; closed loop systems; control nonlinearities; control system synthesis; linear systems; robust control; steam turbines; actuator dead zone; actuator nonidealities; coal-fired boiler/turbine unit; control signals; generic nonsmooth H output synthesis; nonconservative closed-loop robust performance guarantees; nonsmooth H output regulator theory; performance improvement; plant outputs; standard linear H controller design; steady-state error regulation; steady-state regulation error; steam flow rate manipulation; turbine valve command; turbine valve position actuation; Actuators; Boilers; H infinity control; Robustness; Steady-state; Turbines; $mathcal {H}_{infty }$ control; Actuators; H∞ control; boiler--turbine control; boiler???turbine control; dead zone; nonsmooth nonlinearities; robust performance; robust performance.;
fLanguage :
English
Journal_Title :
Control Systems Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
1063-6536
Type :
jour
DOI :
10.1109/TCST.2015.2399672
Filename :
7055314
Link To Document :
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