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Chapter 4 Time Response
POLES,ZEROS,AND SYSTEM RESPONSE ,[object Object],[object Object]
POLES OF TRANSFER FUNCTION ,[object Object],[object Object],[object Object]
ZEROS OF A TRANSFER FUNCTION ,[object Object],[object Object],[object Object]
POLES AND ZEROS OF A FIRST-ORDER SYSTEM ,[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object]
Figure 4.1 a.  System showing input and output; b.  pole-zero plot of the system; c.  evolution of a system response. Follow blue arrows to see the evolution of the response component generated by the pole or zero.
Figure 4.2 Effect of a real-axis pole upon transient response
Figure 4.3 System for Example 4.1
FIRST ORDER SYSTEMS ,[object Object],[object Object]
Figure 4.4 a.  First-order system; b.  pole plot
Figure 4.5 First-order system response to a unit step
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Figure 4.6 Laboratory results of a system step response test
SECOND ORDER SYSTEMS ,[object Object]
Figure 4.7 Second-order systems, pole plots, and step responses
[object Object],[object Object],[object Object]
Figure 4.8 Second-order step response  components generated by complex poles
Figure 4.9 System for Example 4.2
[object Object]
[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Figure 4.10 Step responses for second-order system damping cases
THE GENERAL SECOND ORDER SYSTEM ,[object Object],[object Object],[object Object]
Figure 4.11 Second-order response as a  function of  damping ratio
Figure 4.12 Systems for Example 4.4
Figure 4.13 Second-order underdamped responses for damping ratio  values
Figure 4.14 Second-order underdamped response specifications
Figure 4.15 Percent overshoot vs. damping ratio
Figure 4.16 Normalized rise time vs. damping ratio for a second-order underdamped response
Figure 4.17 Pole plot for an underdamped  second-order system
Figure 4.18 Lines of constant peak time,T p  , settling time,T s  , and percent overshoot, %OS Note: T s 2  < T s 1  ; T p 2   < T p 1 ; %OS 1  < %OS 2
Figure 4.19 Step responses of second-order underdamped  systems as poles move: a.  with constant  real part; b.  with constant  imaginary part; c.  with constant  damping ratio
Figure 4.20 Pole plot for Example 4.6
Figure 4.21 Rotational mechanical system for Example 4.7
Figure 4.22 The Cybermotion SR3 security robot on patrol. The robot navigates by ultrasound and path programs transmitted from a computer, eliminating the need for guide strips on the floor. It has video capabilities as well as temperature, humidity, fire, intrusion, and gas sensors . Courtesy of Cybermotion, Inc.
Figure 4.23 Component responses of a three-pole system: a.  pole plot; b.  component responses: nondominant pole is near dominant second-order pair (Case I), far from the pair (Case II), and at infinity (Case III)
Figure 4.24 Step responses of system T 1 (s), system T 2 (s), and system T 3 (s)
Figure 4.25 Effect of adding a zero to a  two-pole system
Figure 4.26 Step response of a nonminimum-phase system
Figure 4.27 Nonminimum-phase electrical circuit
Figure 4.28 Step response  of the  nonminimum-phase network of Figure 4.27 (c(t)) and normalized step response of an equivalent network without the zero (-10c o (t))
Figure 4.29 a.  Effect of amplifier saturation on load angular velocity response; b.  Simulink block diagram
Figure 4.30 a.  Effect of deadzone on load angular displacement response; b.  Simulink block diagram
Figure 4.31 a.  Effect of backlash on load angular displacement response; b.  Simulink block diagram
Figure 4.32 Antenna azimuth position control system for angular velocity: a.  forward path; b.  equivalent forward path
Figure 4.33 Unmanned Free-Swimming Submersible (UFSS) vehicle Courtesy of Naval Research Laboratory.
Figure 4.34 Pitch control loop for the UFSS vehicle
Figure 4.35 Negative step response of pitch control for UFSS vehicle
Figure 4.36 A ship at sea, showing roll axis
Figure P4.1
Figure P4.2
Figure P4.3
Figure P4.4
Figure P4.5
Figure P4.6
Figure P4.7
Figure P4.8
Figure P4.9 ( figure continues )
Figure P4.9  ( continued )
Figure P4.10 Steps in determining the transfer function relating output physical response to the input visual command
Figure P4.11 Vacuum robot lifts two bags of salt Courtesy of Pacific Robotics, Inc.
Figure P4.12
Figure P4.13
Figure P4.14
Figure P4.15
Figure P4.16
Figure P4.17
Figure P4.18
Figure P4.19
Figure P4.20 Pump diagram © 1996 ASME.

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