Design of multivariable controllers Using relay feedback responses
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Abstract
Most of the unit operations in process industries have more than
newlineone control loop Systems with more than one control loop are known as
newlineMulti Input Multi Output MIMO or multivariable systems Interaction
newlinebetween input and output causes a manipulated variable that affects more than
newlineone controlled variable therefore multivariable processes are difficult to
newlinecontrol at independent set points As loop interactions can lead to instability
newlinewhich has to be taken into account for proper choice of input output pairing in
newlinecontrol system design so as to minimize the interactions
newlineIn this research work it is proposed to develop a comprehensive
newlinemathematical modeling framework for the design of multivariable control
newlinesystem using relay feedback responses Also proposed to design the
newlinerespective multi loop controllers and to describe the system behavior during
newlineset point and load changes In order to attain better performance input output
newlineinteractions are reduced and the accuracy level is maintained as per the design
newlinespecifications
newlineDue to interactions between input and output closed loop
newlinemultivariable systems yield undesired responses To characterize these
newlineresponses a novel approach is followed to model off diagonal closed loop
newlinetransfer function of low order MIMO systems in time domain using ideal as
newlinewell as biased relay feedback tests Analytical expressions are derived using
newlineideal and biased relay feedback tests for square transfer function models of 2
newlineby 2 and 3 by 3 MIMO systems having individual transfer function elements
newlineof First Order Plus Dead Time FOPDT structures After simulating 2 by 2
newlineand 3 by 3 MIMO systems relay responses are obtained and validated with
newlinetheoretical model responses The various MIMO benchmark processes are
newlinediscussed in the later section
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