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Control of unstable systems / R. Padma Sree; M. Chidambaram.

By: Material type: TextTextPublication details: [S.l.] : Alpha Science Intl Ltd, 2005.Edition: 1st edDescription: 350 p. ; 25 cmISBN:
  • 1842652877 (hardcover)
  • 9781842652879 (hardcover)
Online resources: Summary: The present work is concerned with the design of PID controllers, calculation of set point weighting parameter and identification of transfer function models for unstable systems with time delay and without or with a zero. Synthesis method, IMC method and Equating coefficient method are proposed for design of PID controllers. Three methods are proposed to calculate the set point weighting parameters. Closed loop reaction curve method and optimization method are proposed for identifying transfer function models. Several simulation examples on transfer function models of FCC reactor, distillation column, crystallizer, exothermic CSTR and nonlinear models of CSTR, Co-Polymerization reactor are given to show the effectiveness of the proposed methods. Since steady-state multiplicity arises in chemical systems, biological systesm, separation processes, fluid mechnical systems and recycle processes, the methods proposed in this monograph will be useful to design controllers for such systems.
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Book Book Air University Central Library Islamabad NFIC 629.82 C4341C (Browse shelf(Opens below)) Available P7118

The present work is concerned with the design of PID controllers, calculation of set point weighting parameter and identification of transfer function models for unstable systems with time delay and without or with a zero. Synthesis method, IMC method and Equating coefficient method are proposed for design of PID controllers. Three methods are proposed to calculate the set point weighting parameters. Closed loop reaction curve method and optimization method are proposed for identifying transfer function models. Several simulation examples on transfer function models of FCC reactor, distillation column, crystallizer, exothermic CSTR and nonlinear models of CSTR, Co-Polymerization reactor are given to show the effectiveness of the proposed methods. Since steady-state multiplicity arises in chemical systems, biological systesm, separation processes, fluid mechnical systems and recycle processes, the methods proposed in this monograph will be useful to design controllers for such systems.

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