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Process Control

Introduction
Process control
Automation
Automatic control
Linear Control Thoery
Control engineering
Outline of control engineering
Control theory
Controller (control theory)
Classical control theory
Single-input single-output system
Frequency response
Eigenvalues and eigenvectors
Pole (complex analysis)
Zero (complex analysis)
Bode plot
Nyquist plot
Nichols plot
The Basics
Discrete time and continuous time
Feedback
Negative feedback
Positive feedback
Process variable
Setpoint (control system)
Overshoot (signal)
Deadband
Applied Process Control
Control system
Bang–bang control
Stiction
Open-loop controller
PID controller
Ziegler–Nichols method
Noise
Hunting oscillation
Lead–lag compensator
Feed forward (control)
Gain scheduling
Proportional control
Digital control
Integral windup
Process control monitoring
Advanced process control
Model predictive control
Discrete-time signal
Adaptive control
Smith predictor
Kalman filter
Instrumentation
Distributed control system
Industrial control system
Electronics
Programmable logic controller
Pneumatics
Actuator
Analog-to-digital converter
Current loop
Control valve
Flow control valve
Hysteresis
Microcontroller
Regulator (automatic control)
Relay
Sensor
Transducer
Valve
Real-Life Control Systems
Anti-lock braking system
Cataract (beam engine)
Centrifugal governor
Cruise control
Flush toilet
Governor (device)
HVAC control system
Nozzle and flapper
Temperature control
Thermostat
Whitehead torpedo
Math Reference
Chain rule
Convolution
Linear interpolation
Linearity
Superposition principle
Derivative
Integral
Differential equation
Nonlinear system
Finite difference
Frequency domain
Phase margin
Laplace transform
Inverse Laplace transform
Fourier transform
Z-transform
Backstop
Servomechanism
Gain (electronics)
Low-pass filter
Continuous function
Damping ratio
Filter (signal processing)
Digital signal processing
Sampled data system
Analog signal processing
Control–feedback–abort loop