The configuration tool is seamlessly integrated into STEP 7 (TIA Portal). It provides the following functions:
Commissioning screens: The commissioning software contains all screens for commissioning Modular and Standard PID Control.
Working with trend view: The trend view is used for graphical illustration of the setpoint, actual value and manipulated variable over time. The values of the trend view are updated at configurable intervals. This is of particular benefit for the verification of the process quality and supports the troubleshooting.
Wizard for optimization of control circuits: The clear and simple controller optimization and the commissioning by means of the PID Self-Tuner can be performed even without any knowledge of control systems.
Variable transient response in the case of the continuous PID controller: The transient response of the control loop can be preselected in such a way that the control loop settles with an overshoot of approximately 10% and therefore gains dynamic response. If this is not desirable, aperiodic settling (no overshoot) can be set.
User-friendly, context-sensitive help: At any point in the program the appropriate help is available upon request.
Standard PID Control functions
The controller structure for Standard PID Control is pre-assembled and the data structure is fixed. The following functions can be switched on and off by means of software switches:
Setpoint processing with setpoint value generator, ramp-soak, normalization, FC call, limiting of the setpoint ramp (ramp-function generator) and limiting of the setpoint.
Actual-value processing with scaling, smoothing, square root, FC call, limit value monitoring and monitoring of the actual-value gradient.
Error signal processing with dead band and limit monitoring.
PID algorithm, in the case of step controllers with and without position feedback.
Manipulated value processing, with manual/automatic switchover, manual value generator, FC call, limiting of the setpoint gradient, setpoint limitation and normalization
Standard function blocks
FB/FC
Functions
PID_CP
PID controller with continuous manipulated variable (continuous controller) or pulse output (pulse controller); in addition to the functions in the setpoint and actual-value branch, it implements a complete PID controller with a continuous manipulated variable, which is also made available as a pulse-width-modulated signal; manipulated variable can also be influenced manually, sub-functions can be connected or disconnected
PID_ES
PID controller with binary manipulated variable (step controller); in addition to the functions in the setpoint and actual-value branch, it implements a complete PID controller with a binary manipulated variable for integrating actuators. The step controller can be implemented with or without position feedback; manipulated variable can also be influenced manually, sub-functions can be connected or disconnected
LP_SCHED
Loop scheduler; controls the calling of individual control loops within the cyclic interrupt level
Modular PID Control functions
The controller structure of Modular PID Control is, on the other hand, fully programmable. The following functions are available:
Standard function blocks
FB/FC
Comment
Functions
A_DEAD_B
Adaptive dead band
Filters higher-frequency interfering signals out of the error signal
CRP_IN
Convert analog input value
Input values in I/O format are converted to floating-point values for Modular PID Control
CPR_OUT
Convert analog output value
A floating-point value from Modular PID Control is converted into an output value in I/O format
DEAD_T
Dead time
Delays an input value by a configurable dead time
DEADBAND
Dead band
Differentiates the input variable as a function of the time and smoothes the signal with a first-order delay element
DIF
Derivative-action element
Calculates the error signal and monitors it for limits that can be entered
ERR_MON
Error signal monitoring
Calculates the error signal and monitors it for limits that can be entered
INTEG
Integrator
Integrates an input variable as a function of the time and limits the output to the definable limits
LAG1ST
First-order delay element
Implements a first-order delay element
LAG2ND
Second-order delay element
Implements a second-order delay element
LIMALARM
Limit monitor
Checks an input value for 4 configurable limits
LIMITER
Limitation
Sets configurable limits for an input variable
LMNGEN_C
Output of continuous-action PID controller
Contains the manipulated variable processing unit for a continuous-action PID controller. It always has to be used in combination with the PID algorithm block.
LMNGEN_S
Output of PID step controller
Contains the manipulated variable processing unit for a step controller for integrating actuators. It is always interconnected with the PID algorithm block.
LP_SCHED
Controller call distribution function
Controls the calling of individual control loops within a cyclic interrupt level
NONLIN
Non-linear static characteristic
Forms a non-linear characteristic (polyline)
NORM
Physical normalization
Scales an input variable. The normalization line is defined by 2 points.
OVERRIDE
Override control
Required for implementing an override control
PARA_CTL
Parameter control
Transfers several controller parameter sets to a PID controller
PID
PID algorithm
Provides a PID algorithm and must always be used in conjunction with LMNGEN_C or LMNGEN_S
PULSEGEN
Pulse shaper
Generates the pulse output for PID controllers with pulse output for proportional actuators
RMP_SOAK
Ramp soak
Performs configured/programmed ramp soak curves
ROC_LIM
Ramp or ramp-function generator
Limits the rate of change of an input variable. Step jump functions become ramp functions.
SCALE
Linear scaling
Scales an input variable. The normalization line is defined by factor and offset.
SP_GEN
Setpoint generator
Changes the output value continuously by means of pushbuttons
SPLT_RAN
Split ranging
Required for implementing a split-range control
SWITCH
Analog value switch
Switches one of 2 input values to one of 2 output values
Application examples of PID Professional
Application example
Functions
EXAMPLE 01
Standard PID CTRL: Step controller
EXAMPLE 02
Standard PID CTRL: Continuous-action controller
EXAMPLE03
Standard PID CTRL: Cascade controller
EXAMPLE 04
Standard PID CTRL: Pulse controller
EXAMPLE 05
Standard PID CTRL: Optimize the continuous-action controller with the PID Self-Tuner
EXAMPLE 06
Standard PID CTRL: Optimize the step controller with the PID Self-Tuner
EXAMPLE 07
Standard PID CTRL: Optimize the pulse controller with the PID Self-Tuner
EXAMPLE 08
Modular PID CTRL: Step controller
EXAMPLE 09
Modular PID CTRL: Continuous-action controller
EXAMPLE 10
Modular PID CTRL: Pulse controller
EXAMPLE 11
Modular PID CTRL: Single-loop ratio controller
EXAMPLE 12
Modular PID CTRL: Mixture controller
EXAMPLE 13
Modular PID CTRL: Controller with feedforward control
EXAMPLE 14
Modular PID CTRL: Range selection controller
EXAMPLE 15
Modular PID CTRL: Alternating controller
EXAMPLE 16
Modular PID CTRL: Optimize the continuous-action controller with the PID Self-Tuner
EXAMPLE 17
Modular PID CTRL: Optimize the step controller with the PID Self-Tuner
EXAMPLE 18
Modular PID CTRL: Optimize the pulse controller with the PID Self-Tuner
skener.ru
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Арматура DENDOR
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Датчики и измерители
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Регуляторы и регистраторы
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Пневматическое оборудование
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Краны и Клапаны
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Измерительные приборы
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Системы беспроводного управления «умный дом»
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Бесконтактные выключатели Конечные выключатели Оптические датчики Энкодеры
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SKW-FS - Установка умягчения
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SKW-FK - Установка обезжелезивания