Introduction
The FGD-2 Field Ground Detector Module is a transducer that continuously
monitors the resistance of the field circuit of a synchronous machine with
respect to ground. It applies a fixed voltage with respect to ground which
causes a small leakage current to flow. The FGD-2 provides a low voltage
output signal proportional to the leakage current.
The voltage output is measured by a compatible product and used for
field ground protection. Two versions of the FGD-2 are available. A low-
voltage version, rated for 800 Vdc maximum generator field voltage, is
provided for brush or brushless exciter systems. A high-voltage version,
rated for 1.750 Vdc generator field voltage, is provided for static exciter
systems.

The metal enclosure of the FGD-2 offers electric shock protection from
incidental contact. A compatible footprint and identical functionality
make for simple replacement of a Field Ground Detector (FGD) with the
FGD-2.
Installation
The FGD-2 is typically preinstalled in an excitation control system.
If replacement is necessary, carefully label and document each of the
connections to the FGD-2 in order to properly reconnect the new module.
FGD-2 connectors and indicators are illustrated in Figure 1. Locator
letters in Figure 1 correspond to the lettered descriptions in Table 1.
When a replacement FGD-2 is installed in a DECS-2100 or ECS2100
system, the system calibration values may need to be updated.
Retrofitting an FGD
Although the FGD-2 is smaller in size than the FGD, it may still be mounted
in place of an FGD using only four of the six existing mounting holes.
Either the upper four or the lower four mounting holes may be used.
FGD-2 Connections
Connectors with screw-down compression terminals are used for all FGD-2
connections. The connectors, and the headers that they plug into, have a
dovetailed edge that ensures proper connector orientation. Similar-sized
connectors and headers are uniquely keyed to ensure that a connector
mates only with the correct header to prevent damage to the FGD-2.
However, care must still be taken to ensure that the proper connector is
inserted into the appropriate header. Connector screw terminals accept a
maximum wire size of 8 AWG. The maximum screw torque is 7.1 in-lb or
0.8 N•m. Figure 2 illustrates typical FGD-2 connections.
The FGD-2 was designed to be connected between F+ and ground, but
it is also compatible with applications where only F– is available.
Figure 3 illustrates this alternate connection option.
Operation
The FGD-2 continuously monitors the machine field circuit for ground faults.
Ground faults are detected through the measurement of leakage current to
ground which is determined by measuring the voltage drop across a shunt
resistor within the ground detector source. The Basler device connected to
the FGD-2 receives a voltage signal from the ground detection source that
is proportional to the level of field leakage current. The excitation
capabilities and analog input ranges of different Basler products will limit
the maximum compatible field voltage for accurate field ground resistance
measurements. Refer to Table 2 for more details.
AIOM-2
In a DECS-2100 system, the AIOM-2/AIOM digitizes the signal and transmits
it via fiber optic cables to the ECM-2. In an ECS2100 system, the digitized
signal is received by the ECM/SIM. The value of leakage current appears as
an input to the BESTCOMS™Pro FLDGND logic block. Within the FLDGND
logic block, a value of resistance to ground is calculated from the voltage
applied and the level of leakage current measured. Typically, this calculated
resistance value is transmitted to a display panel via the PMOUT logic block.
In the event of a low field ground resistance value, the FLDGND logic block
issues a Low Field Ground Resistance alarm. During detection of low field
ground resistance, an alarm issued by the DIGROUT logic block can be used
to energize a relay within the system’s Digital I/O Module (DIOM-2 or DIOM).
This annunciation may be used to provide a dry
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