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Observer for Linear Distributed-Parameter Systems with Application to Isothermal Plug-Flow Reactor

Observer for Linear Distributed-Parameter Systems with Application to Isothermal Plug-Flow Reactor
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摘要 This paper presents a conception of an exponential observer for a class of linear distributed-parameter systems (DPSs), in which the dynamics are partially unknown. The given distributed-parameter observer ensures asymptotic state estimator with exponentially decay error, based on the theory of C0-semigroups in a Hilbert space. The theoretical observer developed is applied to a chemical tubular reactor, namely the isothermal Plug-Flow reactor basic dynamical model for which measurements are available at the reactor output only. The process is described by Partial differential equations with unknown initial states. For this application, performance issues are illustrated in a simulation study. This paper presents a conception of an exponential observer for a class of linear distributed-parameter systems (DPSs), in which the dynamics are partially unknown. The given distributed-parameter observer ensures asymptotic state estimator with exponentially decay error, based on the theory of C0-semigroups in a Hilbert space. The theoretical observer developed is applied to a chemical tubular reactor, namely the isothermal Plug-Flow reactor basic dynamical model for which measurements are available at the reactor output only. The process is described by Partial differential equations with unknown initial states. For this application, performance issues are illustrated in a simulation study.
机构地区 CESAME LINMA
出处 《Intelligent Control and Automation》 2013年第4期379-384,共6页 智能控制与自动化(英文)
关键词 Distributed-Parameter SYSTEMS C0-SEMIGROUP EXPONENTIAL Observers PERTURBED SYSTEMS TUBULAR Reactor Distributed-Parameter Systems C0-semigroup Exponential Observers Perturbed Systems Tubular Reactor
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