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CHAPTER 5: SETPOINTS
5.4 PROTECTION ELEMENTS
GEK-106310-AF
F650 DIGITAL BAY CONTROLLER
5-75
Operation of the Ground directional element 67G is similar to the operation of the neutral directional element 67N (refer to
section 5.4.4.3 Neutral directional element (67N)), with the exception that the operation magnitude here is the ground
current Ig (67G), measured from the input terminals B9-B10 instead of the Neutral current, In (67N), calculated from the
phase currents.
Polarization magnitudes can be, as in the case of 67N, Polarization voltage (3Vo), either calculated from the phase voltages
or measured from terminals A11-A12, or polarization current (Ip), measured from the fifth input transformer terminals, Isg,
terminals B11-B12.
The following table shows the used magnitudes in each of the Polarization possibilities:
Table 5-45: Magnitudes according to polarization setting
The following table shows the management of the element output signals (block and permission) depending on the
Polarization Type
setting.
Table 5-46: Output signal management according to polarization type setting
The configuration of the signals required for blocking the Ground overcurrent elements from the signals provided by the
Ground directional element is made at
Setpoint > Relay Configuration > Protection Elements
using inverted operation
signals to block the trip.
For example, to block the ground time delayed elements:
GROUND TOC1 BLOCK = NOT (GROUND DIR1 OP)
GROUND TOC2 BLOCK = NOT (GROUND DIR2 OP)
GROUND TOC3 BLOCK = NOT (GROUND DIR3 OP)
To block the Ground Instantaneous elements:
GROUND IOC1 BLOCK = NOT (GROUND DIR1 OP)
GROUND IOC2 BLOCK = NOT (GROUND DIR2 OP)
GROUND IOC3 BLOCK = NOT (GROUND DIR3 OP)
POLARIZATION setting
OPERATION MAG.
POLARIZATION MAG.
Vo
Ig
3V0
Ip
Ig
Isg
Vo + Ip
Ig
3V0 or Isg
Vo * Ip
Ig
3V0 and Isg
POLARIZATION setting
GROUND DIR BLOCK SIGNAL
GROUND DIR OP SIGNAL
Vo
V
0
< Ajs. POL V THRESHOLD
Permission V
0
Ip
I
P
< 5 mA
Permission I
P
Vo + Ip
V
0
< POL V THRESHOLD
I
P
< 5 mA
Permission V
0
Permission I
P
Vo * Ip
V
0
< POL V THRESHOLD
I
P
< 5 mA
Permission V
0
Permission I
P
Содержание F650
Страница 68: ...2 32 F650 DIGITAL BAY CONTROLLER GEK 106310 AF 2 6 EXTERNAL CONNECTIONS CHAPTER 2 PRODUCT DESCRIPTION ...
Страница 406: ...6 58 F650 DIGITAL BAY CONTROLLER GEK 106310 AF 6 5 RECORDS CHAPTER 6 ACTUAL VALUES ...
Страница 660: ...7 254 F650 DIGITAL BAY CONTROLLER GEK 106310 AF 7 3 IEC 61850 CONFIGURATOR CHAPTER 7 IEC 61850 PROTOCOL ...
Страница 734: ...12 6 F650 DIGITAL BAY CONTROLLER GEK 106310 AF 12 4 RELAY CONFIGURATION CHAPTER 12 FREQUENTLY ASKED QUESTIONS ...
Страница 772: ...A 32 F650 DIGITAL BAY CONTROLLER GEK 106310 AF A 1 OPERANDS F650 MODEL FX GX APPENDIX A LOGIC OPERANDS ...
Страница 950: ...c 24 F650 DIGITAL BAY CONTROLLER GEK 106310 AF C 8 ANALOG INPUTS APPENDIX C DNP 3 0 PROTOCOL FOR F650 ...
Страница 994: ...H 2 F650 DIGITAL BAY CONTROLLER GEK 106310 AF APPENDIX H FACTORY DEFAULT LOGIC ...
Страница 995: ...APPENDIX H FACTORY DEFAULT LOGIC GEK 106310 AF F650 DIGITAL BAY CONTROLLER h 3 ...
Страница 996: ...H 4 F650 DIGITAL BAY CONTROLLER GEK 106310 AF APPENDIX H FACTORY DEFAULT LOGIC ...
Страница 998: ...H 6 F650 DIGITAL BAY CONTROLLER GEK 106310 AF APPENDIX H FACTORY DEFAULT LOGIC ...
Страница 999: ...APPENDIX H FACTORY DEFAULT LOGIC GEK 106310 AF F650 DIGITAL BAY CONTROLLER h 7 ...
Страница 1002: ...H 10 F650 DIGITAL BAY CONTROLLER GEK 106310 AF APPENDIX H FACTORY DEFAULT LOGIC ...
Страница 1003: ...APPENDIX H FACTORY DEFAULT LOGIC GEK 106310 AF F650 DIGITAL BAY CONTROLLER h 11 ...
Страница 1004: ...H 12 F650 DIGITAL BAY CONTROLLER GEK 106310 AF APPENDIX H FACTORY DEFAULT LOGIC ...
Страница 1044: ...I 40 F650 DIGITAL BAY CONTROLLER GEK 106310 AF I 2 FACTORY DEFAULT CONFIGURATION APPENDIX I FACTORY DEFAULT CONFIGURATION ...
Страница 1046: ...J 2 F650 DIGITAL BAY CONTROLLER GEK 106310 AF J 1 GE MULTILIN WARRANTY APPENDIX J MISCELLANEOUS ...