ABB Relion 670 Series Applications Manual page 303

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1MRK 511 401-UEN Rev. K
Section 13
13.1
Multipurpose filter SMAIHPAC
13.1.1
Identification
Function description
Multipurpose filter
13.1.2
Application
The multi-purpose filter, function block with name SMAI HPAC, is arranged as a three-phase
filter. It has very much the same user interface (e.g. function block outputs) as the standard
pre-processing function block SMAI. However the main difference is that it can be used to
extract any frequency component from the input signal. For all four analogue input signals into
this filter (i.e. three phases and the residual quantity) the input samples from the TRM module,
which are coming at rate of 20 samples per fundamental system cycle, are first stored. When
enough samples are available in the internal memory, the phasor values at set frequency
defined by the setting parameter
internally available for each of the calculated phasors:
Magnitude
Phase angle
Exact frequency of the extracted signal
The SMAI HPAC filter is always used in conjunction with some other protection function (e.g.
multi-purpose protection function or overcurrent function or over-voltage function or over-
power function). In this way many different protection applications can be arranged. For
example the following protection, monitoring or measurement features can be realized:
Sub-synchronous resonance protection for turbo generators
Sub-synchronous protection for wind turbines/wind farms
Detection of sub-synchronous oscillation between HVDC links and synchronous
generators
Super-synchronous protection
Detection of presence of the geo-magnetic induced currents
Overcurrent or overvoltage protection at specific frequency harmonic, sub-harmonic,
inter-harmonic etc.
Presence of special railway frequencies (e.g. 16.7Hz or 25Hz) in the three-phase power
system
Sensitive reverse power protection
Stator or rotor earth fault protection for special injection frequencies (e.g. 25Hz)
etc.
The filter output can also be connected to the measurement function blocks such as CVMMXN
(Measurements), CMMXU (Phase current measurement), VMMXU (Phase-phase voltage
measurement), etc. in order to report the extracted phasor values to the supervisory system
(e.g. MicroSCADA).
Bay control REC670
Application manual
System protection and control
IEC 61850
identification
SMAIHPAC
SetFrequency are calculated. The following values are
It is recommended that the trip time delay of under voltage or under current
functions is set longer than the SMAIHPAC FilterLength to allow time for the
SAMIHPAC outputs to stabilize at startup.
© Copyright 2017 Hitachi Power Grids. All rights reserved
System protection and control
GUID-6B541154-D56B-452F-B143-4C2A1B2D3A1F v1
GUID-8224B870-3DAA-44BF-B790-6600F2AD7C5D v1
IEC 60617
ANSI/IEEE C37.2
identification
device number
-
-
GUID-A1F20DD8-571E-42C3-84F3-C557EC352ED0 v2
Section 13
297

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