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Electro Industries/GaugeTech
Doc # E151701
C
-1
Appendix
C
Three-P
Phase Power Measurement
This introduction to three-phase power and power measurement is intended to provide only a brief
overview of the subject. The professional meter engineer or meter technician should refer to more
advanced documents such as the
EEI Handbook for Electricity Metering
and the application standards
for more in-depth and technical coverage of the subject.
C
.1: Three-P
Phase System Configurations
Three-phase power is most commonly used in situations where large amounts of power will be used
because it is a more effective way to transmit the power and because it provides a smoother delivery
of power to the end load. There are two commonly used connections for three-phase power, a wye
connection or a delta connection. Each connection has several different manifestations in actual use.
When attempting to determine the type of connection in use, it is a good practice to follow the
circuit back to the transformer that is serving the circuit. It is often not possible to conclusively
determine the correct circuit connection simply by counting the wires in the service or checking
voltages. Checking the transformer connection will provide conclusive evidence of the circuit
connection and the relationships between the phase voltages and ground.
C
.1.1: Wye Connection
Q
The wye connection is so called because when you look at the phase relationships and the winding
relationships between the phases it looks like a wye (Y). Fig. C.1 depicts the winding relationships
for a wye-connected service. In a wye service the neutral (or center point of the wye) is typically
grounded. This leads to common voltages of 208/120 and 480/277 (where the first number represents
the phase-to-phase voltage and the second number represents the phase-to-ground voltage).
Q
The three voltages are separated by 120o electrically. Under balanced load conditions with unity
power factor the currents are also separated by 120o. However, unbalanced loads and other
conditions can cause the currents to depart from the ideal 120o separation.
Phase A
Phase B
Phase C
Figure 1.1: Three-Phase Wye Winding
Figure C.1: Three-Phase Wye Winding
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 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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