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Servo Motors and Industrial Control Theory [electronic resource] /by Riazollah Firoozian.

by Firoozian, Riazollah [author.]; SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Mechanical Engineering Series: Publisher: Boston, MA : Springer US, 2009.Description: online resource.ISBN: 9780387854601.Subject(s): Engineering | Vibration | Industrial engineering | Engineering | Vibration, Dynamical Systems, Control | Control, Robotics, Mechatronics | Industrial and Production EngineeringDDC classification: 620 Online resources: Click here to access online
Contents:
Feedback Control Theory -- Feedback Control Theory Continued -- State Variable Feedback Control Theory -- Electrical DC Servo Motors -- Stepping Servo Motors -- AC Servo Motors -- Electrohydraulic Servo Motors -- Actuators Based on Electro-Rheological Fluid -- The Choice and Comparison of Servo Motors.
In: Springer eBooksSummary: Servo Motors and Industrial Control Theory presents the fundamentals of servo motors and control theory in a manner that is accessible to undergraduate students, as well as practitioners who may need updated information on the subject. Graphical methods for classical control theory have been replaced with examples using common mathematical software, such as MathCad and MatLab, to solve real-life engineering control problems. State variable feedback control theory, which is generally not introduced until the Masters level, is introduced clearly and simply for students to approach complicated problems and examples. Several parameters are introduced for each servo control system discussed, making this book a must-have reference guide for control system designers.
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Feedback Control Theory -- Feedback Control Theory Continued -- State Variable Feedback Control Theory -- Electrical DC Servo Motors -- Stepping Servo Motors -- AC Servo Motors -- Electrohydraulic Servo Motors -- Actuators Based on Electro-Rheological Fluid -- The Choice and Comparison of Servo Motors.

Servo Motors and Industrial Control Theory presents the fundamentals of servo motors and control theory in a manner that is accessible to undergraduate students, as well as practitioners who may need updated information on the subject. Graphical methods for classical control theory have been replaced with examples using common mathematical software, such as MathCad and MatLab, to solve real-life engineering control problems. State variable feedback control theory, which is generally not introduced until the Masters level, is introduced clearly and simply for students to approach complicated problems and examples. Several parameters are introduced for each servo control system discussed, making this book a must-have reference guide for control system designers.

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