PURPOSE
BE1-67N Ground Directional Overcurrent Relays provide ground fault protection for transmission and
distribution lines by sensing the flow of ground (zero sequence) current into or out of protected zones.
Zero sequence quantities provide a secure reference for the directional element because these quantities
are defined by the total source impedance of the power system.
APPLICATION
BE1-67N Ground Directional Overcurrent Relays are recommended for multi-grounded systems to
provide coordination necessary to selectively trip the faulted line. A directional overcurrent relay operates
by comparing the measured current to a reference quantity to determine whether current is flowing into or
out of the protected zone. Reference quantity is also referred to as polarizing quantity.
BE1-67N relays use one of the following quantities for polarization:
• Zero sequence current
• Zero sequence voltage
• Dual zero sequence current and voltage

The polarizing quantity is field selectable using a switch mounted on the analog circuit board. When the
selected polarizing quantities are less than the minimum threshold, relay operation will be inhibited. When
using dual polarization, the relay will operate if either polarizing quantity is above minimum threshold.
Zero Sequence Current
Zero sequence current polarization is preferred for applications with low ground source impedance.
Figure 1-1 illustrates relay connections that obtain zero sequence current (3I0
) from a separate current
transformer in the grounded neutral of a two winding wye-delta power transformer. Figure 1-2 illustrates
relay connections that obtain zero sequence current from a current transformer(s) in the grounded
neutral(s) of a three winding transformer. The magnitude of the zero sequence current used for polarizing
may be different from that of the ground current seen by the measuring element(s) of the relay.
Zero Sequence Voltage
Zero sequence voltage polarization is preferred for higher ground source impedances. Refer to Figures 1
1 and 1-2 for relay connections that obtain zero sequence voltage (3V0
) from a set of grounded wye
broken delta voltage transformers. The voltage polarized relay has a directional polarization adjustment to
match the impedance angle of the protected line to the characteristic angle of the relay. This is the angle
about which the directional angle is centered. A choice of line angles allows the relay to be adjusted to
include the resistance component of the ground fault.
Dual Zero Sequence Current and Voltage
Dual polarization is preferred where ground source impedance varies, or to provide redundant
polarization. Dual polarization is achieved using a polarizing signal that is the phasor sum of the current
and voltage polarizing signals.
OUTPUT CONTACTS
BE1-67N relays have the following output contacts: relay status alarm (relay fail), tripping, and auxiliary
(optional).
Relay Status Alarm
A relay status alarm output contact (relay fail) indicates that proper voltages are not being supplied to the
internal relay circuitry or that the microprocessor self-diagnostics has detected an error. This alarm output
contact is normally closed.
Tripping
Normally open or normally closed tripping contacts are included for each function within the relay.
Configuration of these contacts is defined by the relay style number. These output contacts are used with
optionally selected target indicator circuits.
Auxiliary
Normally open, normally closed, or single pole double throw (SPDT) auxiliary contact configurations are
provided to act in parallel with the tripping function(s) of the relay. Configuration of the auxiliary output
contacts are also defined by the relay style chart.
An auxiliary contact can be configured (via internal switches) to operate in parallel with any combination
of tripping outputs. Configurable auxiliary outputs permit use of the BE1-67N relay in various carrier
schemes.
PUSH-TO-ENERGIZE OUTPUTS
A push-to-energize pushbutton is included for each tripping output contact. These pushbuttons can be
used to verify correct operation of external control circuit wiring without the need to supply test signals to
the relay. Control power must be applied for this function to operate. The pushbuttons are recessed
behind the relay front panel and are not accessible with the cover installed.
TARGETS
One target is included for each tripping function as specified by style number. Targets are operated either
by the internal signal initiating tripping (internally operated) or by a minimum of 200 mAdc flowing through
the series circuit consisting of the target coil and output relay contacts (current operated). Within a
specific relay, all targets must be operated in the same way.
POWER SUPPLY OPTIONS
Various power supply options are available to allow the BE1-67N relay to be used with standard supply
voltages. See the style chart for details.
POWER-UP DELAY
A power-up delay timer is initiated upon application of control power to the relay to prevent undesired
contact transitions when sensing signals are present. Operation of measuring circuits and output circuits
are inhibited (less than 0.5 seconds) until the power-up delay period has expired.
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