2. VELOCITY CONTROL SYSTEM with DC MOTOR

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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lab (velocity control system with DC MOTOR) Please I need your help I want you write introduction for this subject
2. VELOCITY CONTROL SYSTEM
with DC MOTOR
When operating a servo motor in a control system, we start
with a command value, eg, a particular speed which you
want the motor to maintain. The actual speed of the motor is
called the feedback (or actual) value. The feedback value sig-
nal comes from the encoder, which is mounted on the motor
shaft.
Equipment
Base unit
Servo regulator SRI
Velocity control module SR2
Support plate
DC motor without gear
Universal instrument
The brain of the system is the servo regulator, which collects
the feedback and command values and tries to keep the
differences between these signals to a minimum. We are now
going to study how the servo regulator in a velocity control
system has to be set and how its parameters P, I, and D affect
the rapidity, accuracy and stability of the system.
Memory oscilloscope
Flywheel
Fact Book reading hints
Servo technology
Servo systems
Digital sensors
Encoder
Servo assembly
• Get out the equipment as listed.
• Insert the servo regulator between the rails of the Base
Analysis of the servo
amplifier
Characteristic properties
P.D and I action
Unit.
2.1 The selector suitches on the servo
regulator corectly positioned
• Connect the velocity control module,
SR2, to the servo regulator.
• Connect the encoder and the motor
you used for the preceding exercise to
the velocity control module.
DIR
(X)
OUT
•Turn the SW/POT selector switch on
INV
the servo regulator to the POT posi-
tion and the AUT/MAN selector
switch to AUT.
0,5 20
(S)
• Turn the DIRINV selector switch to
the INV position.
X10
AUT
0,3
• Set P in the anticlockwise position, I
in position 0.3 as per ill. 2.1.
0.5
0,75
1,0
1,5
MAN
X1
• Turn D to position 2.4 s.
• Turn the Speed/Position selector
switch to the Speced position.
• Turn the SW/POT selector switch to
the POT position.
(S)
X10
0,5
0,75
1,0
1,5
24
0%
100%
X1
Transcribed Image Text:2. VELOCITY CONTROL SYSTEM with DC MOTOR When operating a servo motor in a control system, we start with a command value, eg, a particular speed which you want the motor to maintain. The actual speed of the motor is called the feedback (or actual) value. The feedback value sig- nal comes from the encoder, which is mounted on the motor shaft. Equipment Base unit Servo regulator SRI Velocity control module SR2 Support plate DC motor without gear Universal instrument The brain of the system is the servo regulator, which collects the feedback and command values and tries to keep the differences between these signals to a minimum. We are now going to study how the servo regulator in a velocity control system has to be set and how its parameters P, I, and D affect the rapidity, accuracy and stability of the system. Memory oscilloscope Flywheel Fact Book reading hints Servo technology Servo systems Digital sensors Encoder Servo assembly • Get out the equipment as listed. • Insert the servo regulator between the rails of the Base Analysis of the servo amplifier Characteristic properties P.D and I action Unit. 2.1 The selector suitches on the servo regulator corectly positioned • Connect the velocity control module, SR2, to the servo regulator. • Connect the encoder and the motor you used for the preceding exercise to the velocity control module. DIR (X) OUT •Turn the SW/POT selector switch on INV the servo regulator to the POT posi- tion and the AUT/MAN selector switch to AUT. 0,5 20 (S) • Turn the DIRINV selector switch to the INV position. X10 AUT 0,3 • Set P in the anticlockwise position, I in position 0.3 as per ill. 2.1. 0.5 0,75 1,0 1,5 MAN X1 • Turn D to position 2.4 s. • Turn the Speed/Position selector switch to the Speced position. • Turn the SW/POT selector switch to the POT position. (S) X10 0,5 0,75 1,0 1,5 24 0% 100% X1
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