Control Engineering Solutions: A Practical Approach
Herausgeber: Albertos, P.; Mort, N.; Strietzel, R.
Control Engineering Solutions: A Practical Approach
Herausgeber: Albertos, P.; Mort, N.; Strietzel, R.
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This book collects together in one volume a number of suggested control engineering solutions which are intended to be representative of solutions applicable to a broad class of control problems.
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This book collects together in one volume a number of suggested control engineering solutions which are intended to be representative of solutions applicable to a broad class of control problems.
Produktdetails
- Produktdetails
- Control, Robotics and Sensors
- Verlag: Institution of Engineering & Technology
- Seitenzahl: 320
- Erscheinungstermin: Juni 1997
- Englisch
- Abmessung: 241mm x 152mm x 23mm
- Gewicht: 635g
- ISBN-13: 9780852968291
- ISBN-10: 0852968299
- Artikelnr.: 50909449
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
- Control, Robotics and Sensors
- Verlag: Institution of Engineering & Technology
- Seitenzahl: 320
- Erscheinungstermin: Juni 1997
- Englisch
- Abmessung: 241mm x 152mm x 23mm
- Gewicht: 635g
- ISBN-13: 9780852968291
- ISBN-10: 0852968299
- Artikelnr.: 50909449
- Herstellerkennzeichnung
- Libri GmbH
- Europaallee 1
- 36244 Bad Hersfeld
- gpsr@libri.de
* Chapter 1: Process model identification
* Chapter 2: Analogue controller design
* Chapter 3: Classic controller design
* Chapter 4: Integral wind-up in control and system simulation
* Chapter 5: Control of unstable systems
* Chapter 6: Control of temperature and heat flow rate: the problem of
delays
* Chapter 7: Inverted pendulum control
* Chapter 8: Disturbance rejection
* Chapter 9: Multivariable process control
* Chapter 10: Predictive control vs. PID control of thermal treatment
processes
* Chapter 11: State-space adaptive control for nonlinear systems
* Chapter 12: Distributed process control
* Chapter 13: Fuzzy control: demonstrated with the inverted pendulum
* Chapter 14: Adaptive control supervision
* Chapter 15: Model-based fault detection: an online supervision
concept
* Chapter 16: Microcomputer-based implementations for DC motor-drive
control
* Chapter 17: Software design for real-time systems
* Chapter 2: Analogue controller design
* Chapter 3: Classic controller design
* Chapter 4: Integral wind-up in control and system simulation
* Chapter 5: Control of unstable systems
* Chapter 6: Control of temperature and heat flow rate: the problem of
delays
* Chapter 7: Inverted pendulum control
* Chapter 8: Disturbance rejection
* Chapter 9: Multivariable process control
* Chapter 10: Predictive control vs. PID control of thermal treatment
processes
* Chapter 11: State-space adaptive control for nonlinear systems
* Chapter 12: Distributed process control
* Chapter 13: Fuzzy control: demonstrated with the inverted pendulum
* Chapter 14: Adaptive control supervision
* Chapter 15: Model-based fault detection: an online supervision
concept
* Chapter 16: Microcomputer-based implementations for DC motor-drive
control
* Chapter 17: Software design for real-time systems
* Chapter 1: Process model identification
* Chapter 2: Analogue controller design
* Chapter 3: Classic controller design
* Chapter 4: Integral wind-up in control and system simulation
* Chapter 5: Control of unstable systems
* Chapter 6: Control of temperature and heat flow rate: the problem of
delays
* Chapter 7: Inverted pendulum control
* Chapter 8: Disturbance rejection
* Chapter 9: Multivariable process control
* Chapter 10: Predictive control vs. PID control of thermal treatment
processes
* Chapter 11: State-space adaptive control for nonlinear systems
* Chapter 12: Distributed process control
* Chapter 13: Fuzzy control: demonstrated with the inverted pendulum
* Chapter 14: Adaptive control supervision
* Chapter 15: Model-based fault detection: an online supervision
concept
* Chapter 16: Microcomputer-based implementations for DC motor-drive
control
* Chapter 17: Software design for real-time systems
* Chapter 2: Analogue controller design
* Chapter 3: Classic controller design
* Chapter 4: Integral wind-up in control and system simulation
* Chapter 5: Control of unstable systems
* Chapter 6: Control of temperature and heat flow rate: the problem of
delays
* Chapter 7: Inverted pendulum control
* Chapter 8: Disturbance rejection
* Chapter 9: Multivariable process control
* Chapter 10: Predictive control vs. PID control of thermal treatment
processes
* Chapter 11: State-space adaptive control for nonlinear systems
* Chapter 12: Distributed process control
* Chapter 13: Fuzzy control: demonstrated with the inverted pendulum
* Chapter 14: Adaptive control supervision
* Chapter 15: Model-based fault detection: an online supervision
concept
* Chapter 16: Microcomputer-based implementations for DC motor-drive
control
* Chapter 17: Software design for real-time systems