GE Multilin
G30 Generator Protection System
5-205
5 SETTINGS
5.6 GROUPED ELEMENTS
5
The operating characteristic is shaped out of two offset mho circles shifted down along the imaginary axis as shown below.
Figure 5–91: LOSS OF EXCITATION OPERATING CHARACTERISTICS
STAGE 1 SETTINGS:
The stage 1 characteristic is typically set to detect a loss of excitation for load conditions of 30% of the nominal or higher.
This is achieved with a mho element with a diameter equal to the base impedance of the machine and an offset equal to
half the machine transient reactance (
X
′
d
).
(EQ 5.52)
The stage 1 element should be time delayed to allow for blocking by the VT fuse failure element (50 ms).
STAGE 2 SETTINGS:
The stage 2 characteristic is typically set to detect a loss of excitation for all load conditions. This is achieved with a mho
element with a diameter equal to the synchronous reactance of the machine and an offset equal to half the machine tran-
sient reactance (
X
′
d
).
(EQ 5.53)
During stable power swing conditions the positive-sequence impedance may momentarily enter the stage 2 characteristic.
For security of the function under such conditions, it is recommended to delay stage 2 by a minimum of 0.5 seconds.
MESSAGE
LOSS OF EXCITATION
RADIUS 2: 10.00 ohm
Range: 0.10 to 300.00 ohms in steps of 0.01
MESSAGE
LOSS OF EXCITATION
V SUPV 2: Enabled
Range: Disabled, Enabled
MESSAGE
LOSS OF EXCITATION
PKP DELAY2: 0.500 s
Range: 0.000 to 65.535 s in steps of 0.01
MESSAGE
LOSS OF EXCITATION
UV SUPV: 0.700 pu
Range: 0.000 to 1.250 pu in steps of 0.001
MESSAGE
LOSS OF EXCIT BLK:
Off
Range: FlexLogic operand
MESSAGE
LOSS OF EXCITATION
TARGET: Self-reset
Range: Self-reset, Latched, Disabled
MESSAGE
LOSS OF EXCITATION
EVENTS: Disabled
Range: Disabled, Enabled
830711A1.CDR
C1
Zb
Xd
R
C1
R1
C2
R2
Zb
X’d
Xd
= Center of element 1 = (Zb + X’d) / 2
= Radius of element 1 = Zb / 2
= Center of element 2 = (Xd + X’d) / 2
= Radius of element 2 = Xd / 2
= Base impedance of the machine
= Transient reactance of the machine
= Synchronous reactance of the machine
X
X’d 2
R1
R2
C2
CENTER 1
Zb X
′
d
+
2
-----------------------
, RADIUS 1
Zb
2
-------
=
=
CENTER 2
Xd X
′
d
+
2
-----------------------
, RADIUS 1
Xd
2
-------
=
=
Содержание G30
Страница 10: ...x G30 Generator Protection System GE Multilin TABLE OF CONTENTS ...
Страница 30: ...1 20 G30 Generator Protection System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Страница 414: ...5 274 G30 Generator Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Страница 456: ...8 2 G30 Generator Protection System GE Multilin 8 1 DIRECTIONAL PRINCIPLE 8 THEORY OF OPERATION 8 ...
Страница 470: ...9 14 G30 Generator Protection System GE Multilin 9 1 SETTING EXAMPLE 9 APPLICATION OF SETTINGS 9 ...
Страница 484: ...11 12 G30 Generator Protection System GE Multilin 11 6 DISPOSAL 11 MAINTENANCE 11 ...
Страница 512: ...A 28 G30 Generator Protection System GE Multilin A 1 PARAMETER LISTS APPENDIX A A ...
Страница 620: ...B 108 G30 Generator Protection System GE Multilin B 4 MEMORY MAPPING APPENDIX B B ...
Страница 666: ...E 10 G30 Generator Protection System GE Multilin E 1 IEC 60870 5 104 APPENDIX E E ...
Страница 678: ...F 12 G30 Generator Protection System GE Multilin F 2 DNP POINT LISTS APPENDIX F F ...
Страница 687: ...GE Multilin G30 Generator Protection System H 7 APPENDIX H H 2 ABBREVIATIONS H Z Impedance Zone ...