GE Multilin
T60 Transformer Protection System
5-239
5 SETTINGS
5.6 GROUPED ELEMENTS
5
where:
,
,
ECA = element characteristic angle
IG = ground current
Z_offset is the offset impedance, for which magnitude is the OFFSET setting and angle is the FWD ECA
When
NEUTRAL DIR OC1 POL VOLT
is set to “Measured VX”, one-third of this voltage is used in place of V_0. The following
figure explains the usage of the voltage polarized directional unit of the element.
The figure below shows the voltage-polarized phase angle comparator characteristics for a phase A to ground fault, with:
•
ECA = 90° (element characteristic angle = centerline of operating characteristic)
•
FWD LA = 80° (forward limit angle = the ± angular limit with the ECA for operation)
•
REV LA = 80° (reverse limit angle = the ± angular limit with the ECA for operation)
The above bias should be taken into account when using the neutral directional overcurrent element to directionalize other
protection elements.
Figure 5–112: NEUTRAL DIRECTIONAL VOLTAGE-POLARIZED CHARACTERISTICS
•
NEUTRAL DIR OC1 POLARIZING:
This setting selects the polarizing mode for the directional unit.
– If “Voltage” polarizing is selected, the element uses the zero-sequence voltage angle for polarization. The user
can use either the zero-sequence voltage V_0 calculated from the phase voltages, or the zero-sequence voltage
supplied externally as the auxiliary voltage V_X, both from the
NEUTRAL DIR OC1 SOURCE
.
The calculated V_0 can be used as polarizing voltage only if the voltage transformers are connected in Wye. The
auxiliary voltage can be used as the polarizing voltage provided
SYSTEM SETUP
AC INPUTS
VOLTAGE BANK
AUXILIARY VT CONNECTION
is set to “Vn” and the auxiliary voltage is connected to a zero-sequence voltage
source (such as broken delta connected secondary of VTs).
V_0
1
3
---
VAG VBG VCG
+
+
(
)
zero sequence voltage
=
=
I_0
1
3
---
IN
1
3
---
IA IB IC
+
+
(
)
zero sequence current
=
=
=
827805A1.CDR
V
AG
(reference)
V
BG
V
CG
–3I_0 line
3I_0 line
ECA line
–ECA line
LA
LA
LA
LA
ECA
FWD LA
line
FWD Operating
Region
RE
V
Operating
Region
FWD LA
line
RE
V
LA
line
RE
V
LA
line
–3
V
_0 line
3
V
_0 line
Содержание T60
Страница 6: ...vi T60 Transformer Protection System GE Multilin TABLE OF CONTENTS ...
Страница 14: ...xiv T60 Transformer Protection System GE Multilin TABLE OF CONTENTS ...
Страница 34: ...1 20 T60 Transformer Protection System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Страница 118: ...3 48 T60 Transformer Protection System GE Multilin 3 3 DIRECT INPUT OUTPUT COMMUNICATIONS 3 HARDWARE 3 ...
Страница 146: ...4 28 T60 Transformer Protection System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Страница 490: ...5 344 T60 Transformer Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Страница 522: ...6 32 T60 Transformer Protection System GE Multilin 6 5 PRODUCT INFORMATION 6 ACTUAL VALUES 6 ...
Страница 536: ...7 14 T60 Transformer Protection System GE Multilin 7 1 COMMANDS 7 COMMANDS AND TARGETS 7 ...
Страница 538: ...8 2 T60 Transformer Protection System GE Multilin 8 1 DIRECTIONAL PRINCIPLE 8 THEORY OF OPERATION 8 ...
Страница 568: ...10 12 T60 Transformer Protection System GE Multilin 10 6 DISPOSAL 10 MAINTENANCE 10 ...
Страница 596: ...A 28 T60 Transformer Protection System GE Multilin A 1 PARAMETER LISTS APPENDIX A A ...
Страница 716: ...B 120 T60 Transformer Protection System GE Multilin B 4 MEMORY MAPPING APPENDIX B B ...
Страница 762: ...E 10 T60 Transformer Protection System GE Multilin E 1 IEC 60870 5 104 PROTOCOL APPENDIX E E ...
Страница 774: ...F 12 T60 Transformer Protection System GE Multilin F 2 DNP POINT LISTS APPENDIX F F ...
Страница 785: ...GE Multilin T60 Transformer Protection System H 9 APPENDIX H H 2 ABBREVIATIONS H Z Impedance Zone ...