Schneider Electric PowerLogic PM5300 Series Specifikace Strana 56

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Power Meter 750 63230-507-201A1
Appendix C—Instrument Transformer Wiring: Troubleshooting Guide 03/2007
© 2007 Schneider Electric All Rights Reserved52
A quick check for proper readings consists of kW comparisons (calculated
using the equation above and compared to the meter reading) and a
reasonable lagging 3-phase average power factor reading. If these checks
are okay, there is little reason to continue to check for wiring problems.
SECTION II: COMMON PROBLEMS FOR
3-WIRE AND 4-WIRE SYSTEMS
SECTION III: 3-WIRE SYSTEM
TROUBLESHOOTING
Table C– 1: Section II—Case A
Symptoms: 3-Wire and 4-Wire Possible Causes
Zero amps
Zero kW, kVAR, kVA
CT secondaries shorted
Less than 2% load on power meter based on CT ratio
Example: with 100/5 CT's, at least 2A must flow through CT window for power
meter to “wake up”
Table C– 2: Section II—Case B
Symptoms: 3-Wire and 4-Wire Possible Causes
Negative kW of expected magnitude
Positive kVAR
Normal lagging power factor
All three CT polarities backwards; could be CTs are physically mounted
with primary polarity mark toward the load instead of toward source or
secondary leads swapped
All three PT polarities backwards; again, could be on primary or secondary
NOTE: Experience shows CTs are usually the problem.
Table C– 3: Section II—Case C
Symptoms: 3-Wire and 4-Wire Possible Causes
Frequency is an abnormal value; may or may not be a
multiple of 60 Hz.
PTs primary and/or secondary neutral common not grounded (values as
high as 275 Hz and as low as 10 Hz have been seen)
System grounding problem at the power distribution transformer (such as
utility transformer), though this is not likely
Table C– 4: Section III—Case A
Symptoms: 3-Wire Possible Causes
Currents and voltages approximately balanced
kW = near 0
kVAR = near 0
PF can be any value, probably fluctuating
CT secondary leads are swapped (A-phase lead on C-phase terminal and
vice versa)
PT secondary leads are swapped (A-phase lead on C-phase terminal and
vice versa)
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