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8/13/2019 37397 a EG3200 Section 7 Analog Manager (NXPowerLite)
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easYgen-3200 TrainingSection 7Analog Manager
marked
CERTIFICATE ofDesign Assessment
byABSAmerican Bureau of Shipping & Affiliated Companies
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ContentsInt roduct ion
Data Sour ces
Source Format
Analog Output
Flexib le L imits
Exercises
sl ide 3
4
10
12
20
25
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Change data source with + and -
Data SourcesPossible data sources
00 Internal values
01 Generator values
02 Mains values03 Busbar
05 Controller setpoints
06 Analog inputs
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Data Sources
Group 00 Internal valuesIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Data SourcesGroup 01 Generator values
Analog
input #
Analog variable Reference value
01.01 Gen. aver.ph-n volt Generator rated voltage
01.02 Gen voltage L1-N Generator rated voltage
01.09 Gen. frequency Rated frequency
01.13 Gen. current average Generator rated current
01.20 Gen. power factor Power factor 1
01.24 Gen. total real power Generator rated real power
01.28 Gen.total react. power Generator rated reactive power
01.32 Gen. total apparent power Gen. rated real and reactive power
And many more detailed values
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Data SourcesGroup 02 Mains valuesIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Data SourcesGroup 05 Controller setpoints
Refer to the controller
section for additional
information
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Data Sources
Group 06 Analog inputs
Group 03 Busbar valuesIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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The format is needed for the following parameters:
The data range of these values is +/- 32000 (+/- 320.00%)
There are two types of values
Parameter: Limit
Hysteresis
Parameter: Source value at minimal output
Source value at maximum output
Flexible limits
Analog outputs
Format of the values:
Source Format
with reference i.e. voltages, refer to rated voltage, entered as 000.00%
without reference i.e. analog inputs entered in the displayed format without anycomma
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Examples:Source Format
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Description of the
parameters
Analog OutputIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Description of the analog output parameters
Data source:
Select from list
Analog OutputIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Description of the analog output parameters
Define the upper andlower limits of the
signal as a percentage
Analog OutputIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Description of the analog output parameters
Select desired signal
type and range
Analog OutputIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises User defined
(max. +/- 20mA/ +/- 10V)
0-10mA / 0-5V
0-20mA / 0-10V
20-4mA
4.5-0.5V
+/-1 V
+/- 2.5
And many more
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Description of the analog output parameters
Only for hardware type:
User defined
For output signal 4 to 20mA:
Range: 0-100% = -20 to 20mA
Min output: 60.00% = 4mA
Max output: 100.00% = 20mA
AnalogOutputIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Description of the analog output parameters
Only for PWM
signal
AnalogOutputIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Examples for analog output parameters from the Configuration manualAnalog Output
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Analog Outputs Status ScreenAnalog outputs
2 analog outputs
Configurable as a
voltage, current, or
PWM signal
Preconfigured for speed and
voltage bias
Signal Options:
OFF
User defined (max. +/- 20mA and +/- 10V)
0-10mA / 0-5V
0-20mA / 0-10V
4-20mA
0.5-4.5V
10-0mA / 5-0V
20-0mA / 10-0V
20-4mA
4.5-0.5V
+/-1 V
+/- 2.5
+/- 3V
+/-10mA / +/-5V
+/-20mA +/-10V
Actual output
signal
% in relation to
the configured
range
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Flexible LimitsDescription of the
parameters
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Flexible Limits
Enter text to be displayed in
alarm list and event log if the
FlexLimit is not configured asa control.
Enter alarm class
Available:A
B
C
D
E
F
Control
Description of the parametersIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Flexible Limits
Enable Flexible limit
(disabled by default)
Enter delay time
Description of the parametersIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Flexible Limits
Limit defines the
threshold that an action is
initiated
Hysteresis defines the
level below the limit that
the condition no longer
exists
Select monitored data
source from list
Description of the parametersIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Flexible Limits
If the alarm class is
configured as
controlthese
parameters are
ignored
Description of the parametersIntroduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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1) Configure the Analog input 1 for a VDO fuel tank level sensor.
Sender Type:
Resistive range: 0 to 180 Ohm linear= 0 to 100% Fuel
level, Single pole (common via engine ground)
2) Additional task: What would you have to change to see the fuel
tank level in liters?
100% = 6000 liters
Exercises: Task A
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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1) Configure the Analog input 1 for a VDO fuel tank level sensor.
Change parameters in the analog input screen
Exercises: Task A
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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1) Configure the Analog input 1 for a VDO fuel tank level sensor.
Enter name to be displayed
Exercises: Solution A
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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1) Configure the Analog input 1 for a VDO fuel tank level sensor.
Select Type linear from list
Verify sender hardware type 0-500 Ohm
Exercises: Solution A
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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1) Configure the Analog input 1 for a VDO fuel tank level sensor.
Exercises: Solution A
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
Select wire break(Not in this example)
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1) Configure the Analog input 1 for a VDO fuel tank level sensor.
Enter value to be displayed
Limit hardware range
to 0-180 Ohm
(180/500=36.00%)
Format displayed value
1000 = 100.0%
(all 0 are overwritten with
measured value)
Exercises: Solution A
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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1) Configure the Analog input 1 for a VDO fuel tank level sensor.
Configure sending unit
connection type to match the
installed single wire sender
Enter resistance offset if
any contact resistance
exists in the circuit
Exercises: Solution A
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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1) Configure the Analog input 1 for a VDO fuel tank level sensor.
Check result in the display
Exercises: Solution A
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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2) Additional task: What would you have to change to view the fuel
tank level in liters?
100% = 6000 liters
Change the format and the
bar graph range
Enter the value to be displayed
at 100% = 6000l
Exercises: Solution A
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Configure the analog output manager to operate
an analog meter that will display the generator real power.
The generator is rated at 200 kW.
The range on the meter display is from62.5 kW to 250 kW.
0mA -62.5 KW
4mA 0 KW
20mA 250 KWKW
250
0
-62.5
Exercises: Task B
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Configure the analog output manager
Generator real power for an analog meter (rated power 200 KW)
0mA -62.5 KW -31.25% from rated power
4mA 0 KW20mA 250 KW 125.00% from rated power
Exercises: Solution B
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Configure the analog output manager
Speed bias signal for analog output 1 range: 37 V.
Exercises: Task C
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Configure the analog output manager
Speed bias signal for analog output 1 range: 37 V.
Hardware type user defined with min. / max. configuration
complete output range is +/- 20mA (+/- 10V)
3V 65.00% min. value7V 85.00% max. value -10V 0V 10V3 7
Exercises: Solution C
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Exercises: Task D
Fuel Transfer Pump OperationThe flexible limits are to be used to activate a fuel pump when the fuel level
in the day tank falls below 20% capacity and shut off the fuel pump when
the fuel level in the day tank exceeds 90% capacity. The flexible limits
interpret the fuel level from an analog input. (refer to section 2, exercise A)
100% = 6000 l 90% = 5400 l 20% = 1200 l
Fuel
90%
20%
Fuel pump OFF
Fuel pump ON
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Exercises: Solution D
Fuel Transfer Pump OperationTwo flexible limits are required for turning on and off a fuel pump. Flexible
limit 5 defines the fuel pump on limit and flexible limit 6 defines the fuel
pump off limit.
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Exercises: Solution D
Fuel Transfer Pump OperationThe LogicsManager for a single discrete output is used to operate the fuel
transfer pump for the day tank.
Flexible limit 5 (20% capacity) activates the fuel pump and the relayremains energized until flexible limit 6 is reached (90% capacity).Discrete Output 10 (13.10) is used as self-holding contact for turning the
fuel pump on and off.
Introduction
Data Sources
Source Format
Analog Outputs
Flexible Limits
Exercises
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Note:
Information contained herein is intended for and appropriate to the purposes of this publication/presentation. Woodward reserves the right to update or otherwise revise any portion of this publication at any time. Technical data and
detailed information is available in Woodward product specs. Specific reliance should be given only to information contained in purchase order(s), other contractual document(s), or information otherwise expressly represented in
writing by Woodward as correct and accurate for the specific facts, circumstances and applications.
Other sections are :
1 Overview
2 Hardware and I/O
3 Operational Modes
4 Configuration and ToolKit
5 Communication
6 LogicsManager
7 Analog Manager
8 Controller
9 Synchronization and breaker
10 Application
11 Sequencing
End of this presentation
Thank you for your attention