Emerson 48330 user manual Value description of the parameters is listed below

Page 71

Chapter 5 Operating SCU

61

2. The value description of the parameters is listed below:

Table 5-13 Value description of the battery test parameters

Parameter

Range

Default

Value description

Battery test

43.1V ~

45.2V

The monitoring module can do battery test, and record 10 sets of

voltage

57.9V

test data (accessible only through the host). The battery test has to

 

 

 

 

be started manually, then monitoring module will control the rectifier

Battery test time

5 ~ 1440min

300min

 

 

 

output voltage, make it lower than the battery voltage, and the

 

 

 

 

 

 

battery discharge will begin. Monitoring module will stop the test if

 

 

 

the battery voltage reaches the “Battery test voltage”, or the

 

 

 

discharge time reaches “Battery test time”, or the battery capacity

 

 

 

reaches “Test End Cap”. Afterwards, it will restore the rectifier

Test End Cap

0.01C10 ~

0.7C10

output voltage to the normal FC voltage, begin the battery charge

(capacity)

0.95C10

and switch the system to battery auto-management. Meanwhile the

 

 

 

 

test start time/voltage and end time/voltage and battery remaining

 

 

 

capacity will be recorded. The records can be queried through the

 

 

 

host.

 

 

 

During the battery test, if abnormalities occur, the monitoring

 

 

 

module will stop the battery test automatically.

 

 

 

 

Scheduled Test

Y, N

Y

 

Planned Test 1

 

00:00, Jan. 1st

When the parameter “Scheduled Test” is set to “Y”, the monitoring

 

Month,day,

 

module will test the battery according to the 4 sets of test time. You

Planned Test 2

00:00, April 1st

 

hour

 

can set at most 12 sets of test time through the host.

Planned Test 3

00:00, July 1st

Planned Test 4

 

00:00, Oct. 1st

 

Alarm Current

1A ~ 100A

10A

If the battery have not discharged within the “ShortTest Cycle”, the

 

 

 

monitoring module will start a short test, whose operation time is

ShortTest Cycle

24h ~ 8,760h

720h

 

 

 

set by the parameter “ShortTest Duration”. By the end of the test, if

 

 

 

ShortTest

 

 

the difference in the discharge currents of batteries is bigger than

1 ~ 60min

5min

the “Alarm Current”, the battery discharge imbalance alarm will be

Duration

 

 

raised. This alarm will automatically end after 5min of delay. Also

 

 

 

 

 

 

you can end it by confirming it.

 

 

 

 

StableTest

Y, N

 

The stable test is conducted with constant battery current, whose

Enable

 

value is set through the parameter “StableTest Current”. If the

 

 

 

 

 

parameter “StableTest Enable” is set to “Y”, and the test will be

StableTest

0 ~ 9999A

9999A

Current

started once the battery satisfies the test condition

 

 

 

 

 

 

3. The schematic diagram of the test function is shown below:

 

 

 

"Test End Voltage"

 

 

Rectifier output

 

is reached

 

 

voltage lower than

Battery

"Test End Cap" is

 

Manually start

battery voltage

Battery

battery test

 

discharges

reached

 

 

Rectifier hot

"Test End Time" is Auto-management

 

 

 

 

standby

reached

 

Figure 5-3 Schematic diagram of the test function

ACTURA Flex 48330 Power System User Manual

Image 71
Contents 31011084 Version V1.0 Revision date May 20Electrical Safety Safety PrecautionsBattery Others Special Safe Requirements of This EquipmentContents Routine Maintenance TestingTemperature Compensation Coefficient Parameters System Settings Alarm SettingsAppendix Daily Inspection ReplacementFunctions of SCU keys Changing audible/visual alarm and alarm call back plan15 Value description of AC settings Figure List Page Introduction FeaturesSystem Description AbbreviationOutline of the DC Power System is illustrated in Figure System ConfigurationSCU BCU Configurations of Actura Flex 48330 Power SystemConfiguration Cabinet dimension % 0.6 % 0.6 m % 0.6 % 0.4 m Outline ComponentsRectifier Shelf Manufacture type Wmm ×Dmm ×Hmm Dimension of Rectifier Shelf are given in TableDimensions of rectifier shelf Connector boardRectifier Dimensions3 SCU Function of indicatorsDimension H % W % D132mm % 85mm % 287mm Weight 0.76kg Multi-Communication modeFunctions fulfilled by SCU and MC Alarm category settings for dry contact outputMulti-Function Unit MFU Password protection for important operationsAuthority and default password Level Authority Default passwordComponent Description Battery Connection Unit BCUConfiguration of MFU Alarm output0m % 0.6m % 0.4m cabinet BCU configurationSystem Cabinet 0m % 0.6m % 0.6m cabinetEnvironmental conditions in power room InstallationInstallation Preparation Power SupplyTools & Material Site SurveyUnpacking Drill reserve holes Installation ProceduresCabinet Installation Installation on the floorInstalling expansive pipe AC input modes External Electrical Connection InterfaceConnection Of Input Cables Connection requirementsDifferent cable connection modes Connection of input terminalsConnection of single-phase AC power input Busbar type Max. load number Configuration number of load MCBs and battery MCBsConnection Of Load Cables Connection Of Communication Cables 12 Connector board in rectifier shelf13 Layout of connector board S6415X2 Layout Of Connector Board S6415X2Connector Pin Signal name Mark number Logic relation Interface Definition Of Connector Board S6415X2Interface definition of connector board S6415X2 Connection With Modem Connection Of Temperature Sensor CablesConnector Pin Signal name Pgng POWER+ PowerConnection With Dry Contacts Battery Installation And CablingBattery Installation Connecting methodStandard configuration Battery Cable Connection16 Connection of battery cables 18 Negative battery cables connection in BCU Non-standard configurationDC/Parallel connections Parallel Connection Of CabinetsChecking Before Startup Check the DC Power System according to -1 before startupSystem checklist before startup StartupStartup Process Parameters ConfigurationTesting SCU TestingTesting MFU Testing RectifierLoad Breaker Test Battery Breaker TestBCU Test Functions of SCU keys Functions of LED indicatorsOperating SCU Operation PanelFirst system information page appears Operation ProceduresFirst Page Of System Information Querying System StatusOther System Information Screen Battery informationAC information BC prompt and temperature informationQuerying Rectifier Status Querying Active Alarm Querying Alarms And Setting Alarm PlansQuery Alarm History Alarm History Alarm type table Alarm Type TableBlvd LlvdChapter Operating SCU Serial Alarm Description Default Changing audible/visual alarm and alarm call back plan Changing Audible/Visual Alarm And Alarm Call Back PlanChanging Alarm Types Of Dry Contacts Setting Alarm Type For Dry ContactsAlarm type Remark Optional alarm typesSet the Alarm Names Through PLC Function Alarm Remark Description Logic matrix used for configuring 8 dry contactsExample of PLC setting PLC SN and AlarmPLC Alarm Remark DescriptionLlvd Blvd MaintenanceOperating SCU Press ESC to return to the menu of higher level Setting System ParametersParameter Setting Method Level Authority Password levels and authoritiesFirst page of the Batt. Selection is shown below Batt. SelectionLVD Parameter Description There are 6 related pages, as shown below Charging Management ParametersOperating SCU 12 Charging management parameter value description Parameter Range Default Value descriptionBC/FC switchover diagram is shown below There are 7 related pages, as shown below Battery Test ParametersValue description of the parameters is listed below 13 Value description of the battery test parametersSchematic diagram of the test function is shown below First page of the setting interface is shown below Temperature Compensation Coefficient ParametersConfiguration interface is shown below AC SettingsThere are three related pages, as shown below DC Setting17 Value description of rectifier settings Rect SettingsSystem Settings There will be a prompt when resetting the system EEM-M 18 Value description of system settings48V/50A/SET/NONE 48V/30A/SET/NONE Model description is shown below19 Relationship between system model and system type Alarm SettingsPower system model System type First page of the setting interface is show below20 Value description of alarm settings Maintenance Of MFU Routine MaintenanceMaintenance Of Rectifier Maintenance Of SCUStorage And Supplementary Battery MaintenanceStore the battery in a cool dry place Cover PlatesReplacement Symptom Cause Suggestion TroubleshootingTroubleshooting Rectifier TroubleshootingDisastrous Accidents Mains FailureEMC Appendix System Technical ParametersParameter Category Mtbf Appendix 2 Engineering Design Diagram Appendix 2 Engineering Design Diagram MCB Connector Connector specsAppendix 3.1 System Electric Schematic Diagram Appendix 3 System Circuit DiagramAppendix 3.2 System Wiring Diagram Appendix 3.3 MFU Electric Wiring Diagram Appendix 3.4 BCU Electric Wiring Diagram LVD Appendix GlossaryAbbreviation Full word Hvsd