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  • 1
    Online Resource
    Online Resource
    [Erscheinungsort nicht ermittelbar] : [Verlag nicht ermittelbar] ; 14. December 1894 [?]-17. Sept. 1909 [?]
    UID:
    gbv_1000056201
    Edition: Köln Universitäts- und Stadtbibliothek 2017-2017 Online-Ressource Online-Ausgabe: Köln : Universitäts- und Stadtbibliothek, 2017 - 2017. Online-Ressource
    Note: Gesehen am 12.10.2017 , Reproduktion , Online-Ausgabe: Köln : Universitäts- und Stadtbibliothek, 2017 - 2017. Online-Ressource.
    Additional Edition: Elektronische Reproduktion von Wöchnerinnen-Asyl-Verein (Köln) Satzungen des Wöchnerinnen-Asyl-Vereins zu Köln [S.l.] , 1894
    Language: German
    Keywords: Zeitschrift
    Library Location Call Number Volume/Issue/Year Availability
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  • 2
    UID:
    almahu_9949385989502882
    Format: 1 online resource
    Edition: First edition.
    ISBN: 9780367433437 , 0367433435 , 1000056163 , 9781000056204 , 1000056201 , 9781000056181 , 100005618X , 9781000056167
    Content: "This comprehensive textbook covers key aspects including analysis, design, assessment and diagnosis of process control. It will help serve as ideal study material for senior undergraduate and graduate students in the field of chemical engineering for a course on process control"--
    Note: List of Figures〈BR〉List of Tables〈BR〉1 Introduction〈BR〉1.1 Single-input-single-output and Multi-input-Multi-output Controllers〈BR〉1.2 Regulator and Servo Control Problems〈BR〉1.3 Dynamic Behaviour of Processes〈BR〉2 Models for Control〈BR〉2.1 Linearization〈BR〉2.2 State-space representation of dynamic models〈BR〉2.3 Transfer function models〈BR〉2.4 Problems and Solutions〈BR〉2.5 Exercises〈BR〉3 Process Identification〈BR〉3.1 Identification of First-order Processes〈BR〉3.2 Identification of Second-order Processes〈BR〉3.3 Identification of First-order with Dead Time〈BR〉3.3.1 Identification of overdamped second-order systems〈BR〉3.4 Problems and Solutions〈BR〉4 Analysis of Transfer Function models〈BR〉4.1 Introduction〈BR〉4.2 Partial Fractions Approach for Solving Transfer Functions〈BR〉4.3 Stability of Transfer function〈BR〉4.4 Problems and Solutions〈BR〉4.5 Exercises〈BR〉5 Controllers and analysis of closed loop transfer functions〈BR〉5.1 PID Controllers〈BR〉5.2 Analysis of Block Diagram〈BR〉5.3 Routh Test〈BR〉5.4 Problems and Solutions〈BR〉5.5 Exercises〈BR〉6 Controller tuning〈BR〉6.1 Stability based on Zeigler Nichols tuning〈BR〉6.2 Tuning based on direct synthesis〈BR〉6.2.1 Inverse response systems〈BR〉6.2.2 Systems with delay element〈BR〉6.2.3 Unstable Systems〈BR〉6.3 Internal Model Control Method〈BR〉6.4 Problems and solutions〈BR〉6.5 Exercises〈BR〉7 Multi-loop and multivariable control〈BR〉7.1 Relative gain array〈BR〉7.2 Cascade control〈BR〉7.3 Static decoupler〈BR〉7.4 Dynamic decoupling〈BR〉7.5 Multivariable PID control〈BR〉7.6 Problems and Solutions〈BR〉8 Model Predictive Control〈BR〉8.1 Introduction to MPC〈BR〉8.1.1 Key aspects of MPC〈BR〉8.2 Development of discrete models〈BR〉8.3 MPC Formulation〈BR〉8.3.1 MPC demonstration through a simple example〈BR〉8.4 Bias removal in MPC〈BR〉8.5 Problems and Solutions〈BR〉9 Fundamentals of controller performance assessment〈BR〉9.1 Performance assessment of control loops〈BR〉9.2 Control loop performance assessment for step type changes in load〈BR〉9.2.1 Model based approach -- DS/IMC tuning rule based Indices〈BR〉9.3 Algorithm for development of SIMC based performance indices〈BR〉9.4 Idle index technique for identification of sluggish control loops〈BR〉9.5 Detecting Oscillations〈BR〉9.5.1 Introduction to ACF〈BR〉9.6 Regularity of zero-crossings of the auto-correlation function〈BR〉9.7 Control loop performance assessment based on variability in the process output〈BR〉9.8 Minimum Variance Index〈BR〉9.9 Scaling exponent based measure for controller performance assessment〈BR〉9.9.1 Implications of the scaling exponent to control loop performance assessment〈BR〉9.10 Problems and Solutions〈BR〉10 Fundamentals of controller performance diagnosis〈BR〉10.1 Control Valve and Stiction〈BR〉10.2 Modeling of Stiction〈BR〉10.2.1 One parameter model for valve stiction〈BR〉10.3 Identification of stiction in control valves〈BR〉10.3.1 Shape based formalism for stiction detection〈BR〉10.3.2 Issues in stiction detection〈BR〉10.3.3 Hammerstein model based approach to Stiction detection〈BR〉10.3.4 Least Squares approach for model parameter identification〈BR〉10.4 Oscillations due to improper controller tuning〈BR〉11 Case Studies〈BR〉11.1 Introduction〈BR〉11.2 2x2 Distillation Column〈BR〉11.2.1 RGA Analysis〈BR〉11.2.2 Decoupler〈BR〉11.2.3 PI Controller Tuning〈BR〉11.2.4 Model Predictive Controller〈BR〉11.3 3x3 Distillation Column〈BR〉11.3.1 RGA Analysis〈BR〉11.3.2 Decoupler〈BR〉11.3.3 PID Controller Tuning〈BR〉11.3.4 Model Predictive Controller〈BR〉11.4 CSTR〈BR〉11.4.1 Model Predictive Controller〈BR〉Bibliography
    Additional Edition: Print version: Rengaswamy, Raghunathan. Process control fundamentals. Boca Raton : CRC Press, 2020 ISBN 9780367433420
    Language: English
    Keywords: Electronic books. ; Electronic books.
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