5 - 4
MELSEC-Q/QnA
5. PID CONTROL PROCEDURE
5.1 PID Control Data
(1) PID control data is used to set the reference values for PID operation.
Store the PID control data into the CPU module with the PID control data setting
*
2
instruction before executing PID operation instruction
*
1
.
The PID control data is classified into two types, "common data for all loops" and
"data for individual loops".
(a) For Basic model QCPU
Table 5.1 PID Control Data List
Incomplete derivative
With PID limits
Without PID limits
Data
No.
Data Item
Description
Setting Range
User
Specification
Range
Setting Range
User
Specification
Range
1
Number of
loops
Sets the number of loops for
which PID operation will be
executed.
1 to 8
1 to 8
1 to 8
1 to 8
Common
setting
data
2
Number of
loops in one
scan
Sets the number of loops for
which single PID operation
will be executed when the
multiple loops reaches the
sampling cycle time.
1 to 8
1 to 8
1 to 8
1 to 8
1
Selection of
operational
expression
Selects the PID operational
expression indicated in
Section 3.1.2/Section 3.2.2.
Forward
operation: 0
Reverse
operation: 1
0 or 1
Forward
operation: 0
Reverse
operation: 1
0 or 1
2
Sampling
cycle (T
S
)
Sets the cycle of PID
operation.
0.01 to 60.00 s
1 to 6000
(unit: 10 ms)
0.01 to 60.00 s
1 to 6000
(unit: 10 ms)
3
Proportional
constant (K
P
)
PID operation Proportional
gain
0.01 to 100.00
1 to 10000
(unit: 0.01)
0.01 to 100.00
1 to 10000
(unit: 0.01)
0.1 to 3000.0 s
0.1 to 3000.0 s
4
Integral
constant (T
I
)
This constant expresses the
magnitude of the integral
operation (I operation) effect.
Increasing the integral
constant slows down the
manipulated value change.
Infinite( )
If the setting
for T
I
exceeds
3000.0 s
1 to 32767
(unit: 100 ms)
Infinite( )
If the setting
for T
I
exceeds
3000.0 s
1 to 32767
(unit: 100 ms)
5
Derivative
constant (T
D
)
This constant expresses the
magnitude of the derivative
operation
(D operation) effect.
Increasing the derivative
constant causes a significant
change in the manipulated
value even with slight
change of the control
objective.
0.00 to 300.00 s
0 to 30000
(unit: 10 ms)
0.00 to 300.00 s
0 to 30000
(unit: 10 ms)
Data for
each loop
6
Filter
coefficient ( )
Sets the degree of filtering
applied to the process value.
The filtering effect decreases
as the value gets closer to 0.
0 to 100 %
0 to 100
0 to 100 %
0 to 100
Содержание Q Mode
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