Hitachi Relion REL670 Product Manual page 41

Line distance protection
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Line distance protection REL670
Version 2.2
Multiple PMU functionality can be configured in the IED,
which can stream out same or different data at different
reporting rates or different performance (service) classes.
7. Current protection
Instantaneous phase overcurrent protection PHPIOC
The instantaneous three phase overcurrent (PHPIOC)
function has a low transient overreach and short tripping
time to allow use as a high set short-circuit protection
function.
Directional phase overcurrent protection, four steps
OC4PTOC
Directional phase overcurrent protection, four steps
(OC4PTOC) has an inverse or definite time delay for each
step.
All IEC and ANSI inverse time characteristics are available
together with an optional user defined time characteristic.
The directional function needs voltage as it is voltage
polarized with memory. The function can be set to be
directional or non-directional independently for each of the
steps.
A second harmonic blocking level can be set for the function
and can be used to block each step individually.
Instantaneous residual overcurrent protection
EFPIOC
The Instantaneous residual overcurrent protection
(EFPIOC) has a low transient overreach and short tripping
times to allow the use for instantaneous earth-fault
protection, with the reach limited to less than the typical
eighty percent of the line at minimum source impedance.
EFPIOC is configured to measure the residual current from
the three-phase current inputs and can be configured to
measure the current from a separate current input.
Directional residual overcurrent protection, four
steps EF4PTOC
Directional residual overcurrent protection, four steps
(EF4PTOC) can be used as main protection for phase-to-
earth faults. It can also be used to provide a system back-
up, for example, in the case of the primary protection being
out of service due to communication or voltage transformer
circuit failure.
EF4PTOC has an inverse or definite time delay independent
for each step.
All IEC and ANSI time-delayed characteristics are available
together with an optional user-defined characteristic.
EF4PTOC can be set to be directional or non-directional
independently for each step.
Hitachi Energy
IDir, UPol and IPol can be independently selected to be
either zero sequence or negative sequence.
A second harmonic blocking can be set individually for each
step.
Directional operation can be combined together with the
corresponding communication logic in permissive or
M12910-3 v15
blocking teleprotection scheme. The current reversal and
weak-end infeed functionality are available as well.
The residual current can be calculated by summing the
three-phase currents or taking the input from the neutral CT.
EF4PTOC also provides very fast and reliable faulty phase
M12846-3 v18
identification for phase selective tripping and subsequent
reclosing during earth fault.
Four step directional negative phase sequence
overcurrent protection NS4PTOC
Four step directional negative phase sequence overcurrent
protection (NS4PTOC) has an inverse or definite time delay
independent for each step separately.
All IEC and ANSI time delayed characteristics are available
together with an optional user defined characteristic.
The directional function is voltage polarized.
NS4PTOC can be set directional or non-directional
independently for each of the steps.
M12701-3 v16
NS4PTOC can be used as main protection for
unsymmetrical fault; phase-phase short circuits, phase-
phase-earth short circuits and single phase earth faults.
NS4PTOC can also be used to provide a system backup for
example, in the case of the primary protection being out of
service due to communication or voltage transformer circuit
failure.
Directional operation can be combined together with
corresponding communication logic in permissive or
blocking teleprotection scheme. The same logic as for
M13667-3 v20
directional zero sequence current can be used. Current
reversal and weak-end infeed functionality are available.
Sensitive directional residual overcurrent and power
protection SDEPSDE
In isolated networks or in networks with high impedance
earthing, the earth fault current is significantly smaller than
the short circuit currents. In addition to this, the magnitude
of the fault current is almost independent on the fault
location in the network. The protection can be selected to
use either the residual current or residual power component
3U0·3I0·cos j, for operating quantity with maintained short
circuit capacity. There is also available one nondirectional
3I0 step and one 3U0 overvoltage tripping step.
© 2017 - 2022 Hitachi Energy. All rights reserved
1MRK 506 372-BEN Q
GUID-485E9D36-0032-4559-9204-101539A32F47 v6
SEMOD171438-5 v6
41

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