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Asociado certificado

WS-130-3E - Advanced Process Control Workshop


Objectives

Process control technology evolves rapidly. This hands-on seminar will allow you to utilize advanced control strategies (cascade, feed forward, override, multivariable, fuzzy logic, and multivariable process control techniques) and to use new tools for simulation and optimization. As a result, you will be able to use these tools to help you increase your factory's productivity.
Who should attend

Instrumentation technicians and supervisors, production managers, process, electrical, and project engineers. In fact, anyone concerned with process performance should attend.
Schedule

From 8:30 to 12h and from 13h to 16h30

Each day
Content

Day 1: Advanced Strategies Based on PID Control

Introduction
  • Types of processes and models
  • Non-linear processes
  • Single vs. multiple loops
PID Controllers
  • Ideal, series, parallel
  • Special structures
  • Special structures
Tuning PID Controllers
  • Traditional tuning methods
  • Significance of dead time
  • Tuning multiple loops simultaneously
Advanced PID Control Methods
  • Tuning to synchronize ratio loops
  • Tuning to decouple loops
  • Tuning cascade loops
  • Selective control
  • Override control
  • Coarse fine control
  • Characterizing non-linear processes


Day 2: Beyond PID Control

Handling Interaction
  • Relative gain array
  • Static and dynamic decoupling
Special Controllers
  • IMC and Dahlin Controllers
  • Smith Predictor
  • Robustness compared to PID
Feedforward Control
  • Static and dynamic
  • Additive or multiplicative
  • Non-linear feedforward control
  • Using many feedforward signals on the same variable


Day 3: More Advanced Tools

Controller Performance Monitoring
  • Statistics for monitoring
  • Performance Indices
Fuzzy Logic
  • Fuzzy sets
  • Fuzzy rules
  • Fuzzification and defuzzification
Mulitvariable Process Control
  • Differentiating between MPC, APC, Expert Systems, Fuzzy Logic, and Advanced Regulatory Control
  • The difference between feedforward, feedback, and MPC
  • Theory and components of MPC
  • Implementation of MPC


Manual used

Hand-outs