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GE F35 User Manual

GE F35
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F35 MULTIPLE FEEDER PROTECTION SYSTEM – INSTRUCTION MANUAL 8-1
F35 Multiple Feeder Protection System
Chapter 8: Commissioning
Commissioni ng
This chapter outlines how to test frequency timing.
8.1 Testing
8.1.1 Testing underfrequency elements
Underfrequency and overfrequency protection requires techniques with subtle testing implications. Whereas most
protection is designed to detect changes from normal to fault conditions that occur virtually instantaneously, power
system inertia requires frequency protection to pick up while the frequency is changing slowly. Frequency measurement is
inherently sensitive to noise, making high precision in combination with high speed challenging for both relays and test
equipment.
Injection to a particular F35 frequency element must be to its configured source and to the channels that the source uses
for frequency measurement. For frequency measurement, a source uses the first quantity configured in the following
order:
1. Phase voltages
2. Auxiliary voltage
3. Phase currents
4. Ground current
For example, if auxiliary voltage and phase currents are configured, the source uses the auxiliary voltage, not the phase
voltages or any of the currents.
When phase voltages or phase currents are used, the source applies a filter that rejects the zero-sequence component. As
such, the same signal must not be injected to all three phases, or the injected signal is completely filtered out. For an
underfrequency element using phase quantities, the phase A signal must be above the
MIN VOLT/AMP setting value.
Therefore, either inject into phase A only, or inject a balanced three-phase signal.

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GE F35 Specifications

General IconGeneral
Frequency50/60 Hz
Device FunctionProtection Relay
Communication ProtocolsDNP3
TypeDigital Protection Relay
Current Rating5 A
Protection FunctionsOvercurrent

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