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Electro Industries/GaugeTech
Doc # E151701
8-4
8.2.1: Loss Compensation in Three Element Installations
Q
Loss compensation is based on the loss and impedance values provided on the transformer
manufacturer’s test report. A typical test report will include at least the following information:
•
Manufacturer
•
Unit Serial Number
•
Transformer MVA Rating (Self-Cooled)
•
Test Voltage
•
No Load Loss Watts
•
Load Loss Watts (or Full Load Loss Watts)
•
% Exciting Current @ 100% voltage
•
% Impedance
Q
The transformer MVA rating is generally the lowest MVA rating (the self-cooled or OA rating) of the
transformer winding. The test voltage is generally the nominal voltage of the secondary or low
voltage winding. For three phase transformers these values will typically be the three-phase rating
and the phase-to-phase voltage. All of the test measurements are based on these two numbers. Part of
the process of calculating the loss compensation percentages is converting the transformer loss
values based on the transformer ratings to the base used by the meter.
Q
Correct calculation of loss compensation also requires knowledge of the meter installation. In order
to calculate the loss compensation settings you will need the following information regarding the
meter and the installation:
•
Number of meter elements
•
Potential Transformer Ratio (PTR)
•
Current Transformer Ratio (CTR)
•
Meter Base Voltage
•
Meter Base Current
Q
This section is limited to application of Nexus® meters to three-element metering installations. As a
result, we know that:
•
Number of metering elements = 3
•
Meter Base Voltage = 120 Volts
•
Meter Base Current = 5 amps
Q
The loss compensation values can be calculated by clicking the
TLC Calculator
button on the
Transformer Loss screen of the Nexus® meter’s Device Profile (
MS Excel Spreadsheet
) or by com-
pleting the worksheet “Three Element Loss Compensation Worksheet” below. In order to activate
the Excel Spreadsheet, you must have MS Excel installed on your computer.
NOTE:
A copy of the
Excel Spreadsheet with Example Numbers
can be found in
Appendix A
of this
manual.
Summary of Contents for Nexus 1262
Page 1: ... The Leader in Power Monitoring and Control The Leader in Power Monitoring and Control ...
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Page 4: ...Electro Industries GaugeTech Doc E151701 ...
Page 8: ...e Electro Industries GaugeTech Doc E151701 iv ...
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Page 130: ...Electro Industries GaugeTech Doc E151701 10 14 ...
Page 133: ...Electro Industries GaugeTech Doc E151701 11 3 Fig 11 1 Form 9S Wye no PTs 3 CTs ...
Page 134: ...Fig 11 2 Form 9S Wye 3 PTs 3 CTs Electro Industries GaugeTech Doc E151701 11 4 ...
Page 135: ...Electro Industries GaugeTech Doc E151701 11 5 Fig 11 3 Form 9S 4 Wire Delta no PTs 3 CTs ...
Page 136: ...Fig 11 4 Form 9S 4 Wire Delta 3 PTs 3 CTs Electro Industries GaugeTech Doc E151701 11 6 ...
Page 139: ...Fig 11 7 Form 9S 3 Wire Delta no PTs 2 CTs Electro Industries GaugeTech Doc E151701 11 9 ...
Page 140: ...Fig 11 8 Form 9S 3 Wire Delta 2 PTs 2 CTs Electro Industries GaugeTech Doc E151701 11 10 ...
Page 141: ...Fig 11 9 Form 36S 2 5 Element Wye no PTs 3 CTs Electro Industries GaugeTech Doc E151701 11 11 ...
Page 142: ...Fig 11 10 Form 36S 2 5 Element Wye 2 PTs 3 CTs Electro Industries GaugeTech Doc E151701 11 12 ...
Page 143: ...Fig 11 11 Form 45S Wye no PTs 3 CTs Electro Industries GaugeTech Doc E151701 11 13 ...
Page 144: ...Fig 11 12 Form 45S Wye 2 PTs 3 CTs Electro Industries GaugeTech Doc E151701 11 14 ...
Page 145: ...Fig 11 13 Form 45S 3 Wire Delta no PTs 2 CTs Electro Industries GaugeTech Doc E151701 11 15 ...
Page 146: ...Fig 11 14 Form 45S 3 Wire Delta 2 PTs 2 CTs Electro Industries GaugeTech Doc E151701 11 16 ...
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