5-160
C70 Capacitor Bank Protection and Control System
GE Multilin
5.6 GROUPED ELEMENTS
5 SETTINGS
5
(EQ 5.18)
The terms used in the above equation are defined as follows.
–
V
0
BUS
is the bus primary zero-sequence voltage during system fault.
–
3
I
0
NTRL
is the primary current in the bank neutral during system fault.
–
n
BUS_VT
is the bus VT ratio set in the source selected by the
NTRL VOL UNBAL 1 BUS SOURCE
setting.
–
n
NTRL_VT
is a neutral point VT ratio set in the source selected by the
NTRL VOL UNBAL 1 NTRL SOURCE
setting. If
R
can be chosen precisely, then
n
NTRL_VT
can be set same as
n
BUS_VT
. If
R
cannot be chosen precisely, then
n
NTRL_VT
is used to match zero-sequence voltage as per the equation above.
–
n
NTRL_CT
is the CT ratio in the bank neutral.
•
NTRL VOL UNBAL 1 AB RATIO
: This setting compensates for the bank inherent unbalance. Physically this value is a
ratio of the reactance in phase A divided by the reactance in phase B. Auto-setting procedure is available under the
Commands menu to calculate this value automatically. When tuning this setting manually, after bank repairs, this ratio
shall be increased or decreased from the nominal value of 1.00 depending on whether the A or B phase got affected by
failures or repairs and whether a given reactance increased or decreased as a result of the failure or repair. This set-
ting should only be used when
NTRL VOL UNBAL 1 BUS 3V0
setting is set as “Calculated”.
•
NTRL VOL UNBAL 1 AC RATIO
: This setting compensates for the bank inherent unbalance. Physically this value is a
ratio of the reactance in phase A divided by the reactance in phase C. Auto-setting procedure is available under the
Commands menu to calculate this value automatically. When tuning this setting manually, after bank repairs, this ratio
shall be increased or decreased from the nominal value of 1.00 depending on whether the A or C phase got affected
by failures or repairs and whether a given reactance increased or decreased as a result of the failure or repair. This
setting should only be used when
NTRL VOL UNBAL 1 BUS 3V0
setting is set as “Calculated”.
•
NTRL VOL UNBAL 1 STG 1 PKP
to
NTRL VOL UNBAL 1 STG 1 PKP
: These settings specify pickup thresholds for
stages 1 through 4 of the function in per-units (pu) of the nominal value of the neutral-point VT (the auxiliary channel of
the neutral source).
•
NTRL VOL UNBAL 1 STG 1 SLOPE
to
NTRL VOL UNBAL 1 STG 4 SLOPE
: These settings specify the slopes of the
operating characteristic. Neglecting compensation for the inherent bank unbalance, the operating signal is a vectorial
difference between the neutral point voltage and the zero-sequence bus voltage. Therefore, the optimum restraining
signal is a vectorial sum of the two signals. During external ground faults, the two voltages are approximately in phase
generating a large restraining signal being twice the zero-sequence voltage at the bus. A slope of few percent is typi-
cally sufficient to provide good security under large system unbalances. If a given stage is used with a time delay lon-
ger than the expected external fault duration, the slope may be reduced or eliminated. In general, the slope can be
understood as a adaptive threshold, and the user is provided with three ways to control sensitivity and security: pickup,
time delay and slope. Refer to the
Application of settings
chapter for more information.
•
NTRL VOL UNBAL 1 STG 1 PKP DELAY
to
NTRL VOL UNBAL 1 STG 4 PKP DELAY
: These settings specify the
pickup time delays for each stage of alarming or tripping. Note that each of the four comparators (four stages) uses an
individual pickup timer, but a common drop out time delay as specified by the next setting.
•
NTRL VOL UNBAL 1 DPO DELAY
: This setting controls a drop out delay for the operate FlexLogic™ operands. Note
that individual stages apply individually configurable pickup delays, but use this common drop out delay.
•
NTRL VOL 1 BLK STG1
to
NTRL VOL 1 BLK STG4
: These settings are used to block the function when required on
a per-stage basis. At minimum this function shall be blocked when the bank is off-line, or else it will operate unneces-
sarily during external ground faults and/or natural system unbalance if set sensitive. Either breaker position or under-
current indication via any available instantaneous overcurrent function, or a combination, may be used for blocking.
Note that when unblocked, the function becomes operational after five cycles of intentional delay. Optionally only the
sensitive stages are blocked, and one stage set high enough to ride through possible problems is left operational. This
stage can be used for abnormal conditions such as a failure of one pole of the breaker to close. The function becomes
blocked if all four blocking inputs are asserted. The individual blocking inputs inhibit the associated stages of the func-
tion.
3
V
0
BUS
n
BUS_VT
-------------------
3
I
0
NTRL
R
×
n
NTRL_VT
×
n
NTRL_CT
n
BUS_VT
×
-------------------------------------------------------------
–
0
=
Содержание UR Series C70
Страница 2: ......
Страница 10: ...x C70 Capacitor Bank Protection and Control System GE Multilin TABLE OF CONTENTS ...
Страница 30: ...1 20 C70 Capacitor Bank Protection and Control System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Страница 124: ...4 30 C70 Capacitor Bank Protection and Control System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Страница 344: ...5 220 C70 Capacitor Bank Protection and Control System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Страница 396: ...8 18 C70 Capacitor Bank Protection and Control System GE Multilin 8 3 ENERVISTA SECURITY MANAGEMENT SYSTEM 8 SECURITY 8 ...
Страница 414: ...9 18 C70 Capacitor Bank Protection and Control System GE Multilin 9 1 OVERVIEW 9 THEORY OF OPERATION 9 ...
Страница 436: ...10 22 C70 Capacitor Bank Protection and Control System GE Multilin 10 4 SETTING EXAMPLE 10 APPLICATION OF SETTINGS 10 ...
Страница 547: ...GE Multilin C70 Capacitor Bank Protection and Control System B 79 APPENDIX B B 4 MEMORY MAPPING B ...
Страница 548: ...B 80 C70 Capacitor Bank Protection and Control System GE Multilin B 4 MEMORY MAPPING APPENDIXB B ...
Страница 586: ...D 10 C70 Capacitor Bank Protection and Control System GE Multilin D 1 OVERVIEW APPENDIXD D ...
Страница 598: ...E 12 C70 Capacitor Bank Protection and Control System GE Multilin E 2 DNP POINT LISTS APPENDIXE E ...