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©2000, John Wiley & Sons, Inc. Nise/Control Systems Engineering, 3/e Chapter 1: Introduction 1 Chapter 1 Introduction

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Page 1: Chapter 1 · PDF fileNise/Control Systems Engineering, 3/e 3 Chapter 1: ... tracking mirror rotated ... Nise/Control Systems Engineering, 3/e 19 Chapter 1: Introduction

©2000, John Wiley & Sons, Inc.Nise/Control Systems Engineering, 3/e

Chapter 1: Introduction1

Chapter 1

Introduction

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Chapter 1: Introduction2

Figure 1.1Simplified description of a control system

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Chapter 1: Introduction3

a. Early elevators were controlled by hand ropes or an elevator operator. Here, a rope is cut to demonstrate the safety brake, an innovation in earlyelevators;b. Modern Duo-lift elevators make their way up the Grande Arche in Paris, driven by one motor, with each car counterbalancing the other. Today, elevators are fully automatic, using control systems to regulate position and velocity.

Figure 1.2Elevators

Photos courtesy of United Technologies Otis Elevator.

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Chapter 1: Introduction4

Figure 1.3Rover was built towork in contaminatedareas at Three MileIsland in Middleton,PA, where a nuclearaccident occurred in1979. The remotecontrolled robot’s long arm can be seen at the front of the vehicle.

Photo © Hank Morgan/Rainbow/PNI.

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(a)

(b)

(c)

Figure 1.4a. Video laser discplayer;b. objective lensreading pits on alaser disc;c. optical path forplayback showingtracking mirror rotated by a control system to keep the laser beam positioned on the pits.

(c) Pioneer Electronics, Inc.

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Figure1.5Elevator input and output

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Chapter 1: Introduction7

Figure 1.6Block diagrams of control systems:a. open-loop system;b. closed-loop system

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Chapter 1: Introduction8

Figure 1.7Computer hard disk drive, showing disks and read/write head

Courtesy of Quantum Corp.

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Figure 1.8The search forextraterrestrial life isbeing carried out withradio antennas like the one pictured here. A radio antenna is anexample of a systemwith position controls.

© Peter Menzel.

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a. system concept;b. detailed layout;c. schematic;d. functional block diagram

Figure 1.9Antenna azimuth position control system:

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Figure 1.10Response of a position control system showing effect of high and low controller gain on the output response

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Figure 1.11The control system design process

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Figure 1.12Equivalent block diagram for the antenna azimuth position control system

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Table 1.1Test waveforms used in control systems

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Figure P1.1Potentiometer

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Figure P1.2Aircraft attitude defined

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Figure P1.3Winder

© J. Ayers, 1988.

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Figure P1.4Control of a nuclear reactor

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Figure P1.5Grinder system

© 1997, ASME.

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Figure P1.6High-speed proportional solenoid valve

© 1996, ASME.

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Figure P1.7RL network

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Figure P1.8RLC network

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Figure P1.9High-speed rail system showing pantograph and catenary

© 1997, ASME.

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Table 1.1Test waveforms used in control systems