PROCESS CONTROL SYSTEMS: APPLICATION, DESIGN, AND TUNING

PROCESS CONTROL SYSTEMS: APPLICATION, DESIGN, AND TUNING

TRAINING OBJECTIVE PROCESS CONTROL SYSTEMS

This training program is the design of control systems for the fluid process industries from basic theory to advanced control applications. It serves as a complete reference to controller selection and tuning, controller performance evaluation, and as a design guide for configuring optimum systems. Using time-domain and relative-gain analysis throughout, it shows you how to solve common control problems and apply proven system solutions–with a minimum of effort and mathematical skill. You’ll also learn how to use your personal computer to speed computations, handle more complex situations, and create more accurate process simulations that save you time and make your job easier.This program includes new information on inventory control, internal model and model predictive control, minimizing deviation and integrated error following load changes, closed-loop responses for distributred-lag processes, tuning rules for the Smith predictor and Proportional-Integral-Derivative (PID) controller with deadtime compensation, the dynamics of the static mixer with and without recirculation, process design guidelines for pH control, set-point filtering, sampling effects, and more. Its clear explanations–illustrated by many simulations, line drawings, graphs, and response curves.



TRAINING MATERIAL OUTLINE PROCESS CONTROL SYSTEMS

Understanding Feedback Control

Dynamic Elements in the Control Loop

  • The Negative-Feedback Loop
  • Process Deadtime
  • He Integral-Control Mode
  • Process Capacity
  • First-Order-Plus-Deadtime Models

Analyzing Real Process

  • Second-Order Process
  • Multicapacity Processes
  • Steady-State Gain
  • Valve Characteristic

The Five Common Control Loops

  • Flow Control
  • Pressure Regulation
  • Liquid-Level Control
  • Quality Control
  • Temperature Control
  • Summary

Selecting The Feedback Controller

Linear Controllers

  • Performance Criteria
  • PID Controllers
  • Model-Based Controllers
  • Interrupting The Control Loop

Nonlinear Control Elements

  • Amplitude-Dependent Gain
  • Dynamic Nonlinear Functions
  • Multiple-State Controller

Multiple-Loop Systems

Improved Control Through Multiple Loops

  • Cascade Control
  • Multiple-Output Control Systems
  • Selective-Control Loops
  • Adaptive Control Systems

Feedforward Control

  • Steady-State Models
  • Ratio Control Systems
  • Dynamic Compensation
  • Combining Feedforward and Feedback

Interaction and Decoupling

  • Relative-Gain Analysis
  • Calculating Relative Gains
  • Effects of Loop Interaction
  • Decoupling

Applications

Energy Transfer and Conversion

  • Heat Transfer
  • Bioler Controls
  • Pump and Compressors

Controlling Chemical Reactions

  • Chemical Kinetics
  • Continous Reactors
  • pH Control

Mass-Transfer Operations

  • Distillation
  • Evaporation
  • Drying

Batch Process Control

  • Special Features of Batch Processes
  • Controller Selection
  • Batch Reactors
  • Batch Drying

Investasi dan Fasilitas Training

  • Harga : (dilampirkan dalam Brosur penawaran)
  • Fasilitas : Certificate, Training kits, USB 8 GB, Lunch, Coffe Break, Souvenir, City Tour
  • Untuk peserta luar kota disediakan transportasi antar-jemput dari Bandara/Stasiun ke Hotel (berlaku bagi perusahaan yang mengirimkan minimal 2 peserta) Khusus untuk training di Yogyakarta.

 

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