5-50
F650 Digital Bay Controller
GEK-106310AB
5.4 PROTECTION ELEMENTS
5 SETTINGS
5
5.4.3.3 PHASE DIRECTIONAL ELEMENT (67P)
The Phase directional element (67P) provides independent elements for each phase, and determines the direction of the
current both in permanence and in fault condition.
Its main function is to apply a blocking signal to the overcurrent elements to prevent their operation when the current is
flowing in a certain direction. In order to determine the direction of the current, the element uses phase current values as
operation magnitude, and phase-to-phase voltage values as polarization magnitude. This means that in order to polarize a
phase, we use the phase-to-phase voltage of the other two phases, known as crossed polarization.
The following table describes the phase directional element settings.
Table 5–42: PHASE DIRECTIONAL ELEMENT SETTINGS
Function:
This setting allows enabling or disabling the corresponding directional element.
MTA:
The MTA setting corresponds to the Torque angle, which is the rotation applied to
phase-to-phase crossed voltage.
Direction:
This setting allows selecting the area for the directional element to operate, either
forward or reverse.
Block Logic:
This setting allows selecting either permission or block, depending on the logic to be
applied in the event of directional element block.
Polarization Voltage Threshold:
This is the minimum voltage considered for the direction calculation. Under this setting,
the element will be blocked.
Snapshot Events:
The snapshot event setting enables or disables the snapshot event generation for the
phase directional elements.
Phase directional element is an independent Protection element that provides block and Operation signals for each phase.
These signals can be monitored both through the relay HMI or using EnerVista 650 Setup at “
Actual > Status > Protection
> Phase Current
”
SETPOINT > PROTECTION ELEMENTS > PHASE CURRENT > PHASE DIRECTIONAL >
PHASE DIRECTIONAL 1> PHASE DIRECTIONAL 2 > PHASE DIRECTIONAL 3
SETTING DESCRIPTION
NAME
DEFAULT VALUE STEP
RANGE
Function permission
Function
DISABLED
N/A
[DISABLED – ENABLED]
Maximum Torque Angle
MTA
45º
1 Deg
[-90 : +90]
Operation Direction
Direction
FORWARD
N/A
[FORWARD – REVERSE]
Block logic
Block Logic
PERMISSION
N/A
[BLOCK – PERMISSION]
Polarization voltage threshold
Pol V Threshold
40
1 V
[0 : 300]
Snapshot event generation
Snapshot Events
ENABLED
N/A
[DISABLED – ENABLED]
Содержание Multilin F650
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Страница 323: ...5 176 F650 Digital Bay Controller GEK 106310AB 5 13 IEC 60870 5 103 PROTOCOL CONFIGURATION 5 SETTINGS 5 ...
Страница 443: ...7 74 F650 Digital Bay Controller GEK 106310AB 7 3 IEC 61850 CONFIGURATOR 7 IEC 61850 PROTOCOL 7 Figure 7 21 ...
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Страница 513: ...10 28 F650 Digital Bay Controller GEK 106310AB 10 18 THERMAL IMAGE ELEMENT 49 10 COMMISSIONING 10 ...
Страница 529: ...12 6 F650 Digital Bay Controller GEK 106310AB 12 4 RELAY CONFIGURATION 12 FREQUENTLY ASKED QUESTIONS 12 ...
Страница 569: ...A 36 F650 Digital Bay Controller GEK 106310AB A 1 LOGIC OPERANDS APPENDIX A A ...
Страница 735: ...C 24 F650 Digital Bay Controller GEK 106310AB C 8 ANALOG INPUTS APPENDIX C C ...
Страница 743: ...D 8 F650 Digital Bay Controller GEK 106310AB D 5 IEC 60870 5 104 POINT LIST APPENDIX D D ...
Страница 755: ...F 10 F650 Digital Bay Controller GEK 106310AB F 1 IEC 60870 5 103 PROTOCOL APPENDIX F F ...
Страница 766: ...GEK 106310AB F650 Digital Bay Controller G 11 APPENDIX G G 1 FACTORY DEFAULT LOGIC G ...
Страница 767: ...G 12 F650 Digital Bay Controller GEK 106310AB G 1 FACTORY DEFAULT LOGIC APPENDIX G G ...
Страница 801: ...I 2 F650 Digital Bay Controller GEK 106310AB I 1 GE MULTILIN WARRANTY APPENDIX I I ...