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3 Operation Theory
PCS-9611 Feeder Relay
3-21
Date: 2014-04-08
“50/51Gx.Dir” (x: 1~4) denotes the status of the zero sequence directional element, see
Section 3.5.3
for more details about the directional element;
“50/51Gx.HmBlk” (x: 1~4) denotes the status of the harmonic blocking element, see
Section
for more details about the harmonic blocking element.
3.5.2 IDMT Zero Sequence Overcurrent Protection
The stage 3 and 4 zero sequence overcurrent protections also can be used as zero sequence
inverse definite minimum time ( IDMT) overcurrent protection. They have the same inverse time
characteristic with the IDMT overcurrent protection (see
Section 3.3.2
), and the setting
[50/51Gx.Opt_Curve] (x: 3 or 4) can be used to select the expected curve.
The logic diagram of the No.1 stage 4 zero sequence IDMT overcurrent protection is shown as
below. The zero sequence overcurrent block is a level detector that detects whether the current
magnitude is above the threshold.
[50/51G4.En]
[50/51G4.En1]
[50/51G4.Opt_Curve] = 0
&
50/51G4.HmBlk
50/51G4.Dir
&
[50/51G4.Op]
I
01
> [50/51G4.3I0_Set]
[50/51G4.Blk]
[50/51G4.St]
IDMT
Figure 3.5-2 Logic diagram of the No.1 stage 4 IDMT ROC protection
Where:
[50/51G4.3I0_Set] is the current setting of the No.1 stage 4 ROC protection;
[50/51G4.En] is the logic setting of the No.1 stage 4 ROC protection;
[50/51G4.En1] is the binary signal for enabling the No.1 stage 4 ROC protection;
[50/51G4.Blk] is the binary signal for blocking the No.1 stage 4 ROC protection;
[50/51G4.Opt_Curve] is the setting for selecting the inverse time characteristic curve;
“50/51G4.Dir” denotes the status of the zero sequence directional element for the No.1 stage
4 zero sequence overcurrent protection, see
Section 3.5.3
directional element;
“50/51G4.HmBlk” denotes the status of the harmonic blocking element for the No.1 stage 4
zero sequence overcurrent protection, see
Section 3.5.4
for more details about the harmonic
blocking element.
The stage 3 zero sequence overcurrent protection has the same logic diagram with the stage 4
zero sequence overcurrent protection, but the operation threshold is its own setting threshold.
3.5.3 Directional Element for Zero Sequence Overcurrent Protection
The residual voltage is used to polarize the directional earth fault (DEF) protection. With earth
Summary of Contents for PCS-9611
Page 1: ...PCS 9611 Feeder Relay Instruction Manual NR Electric Co Ltd...
Page 2: ......
Page 10: ...1 Introduction PCS 9611 Feeder Relay 1 b Date 2014 04 08...
Page 30: ...2 Technical Data PCS 9611 Feeder Relay 2 14 Date 2014 04 08...
Page 36: ...3 Operation Theory PCS 9611 Feeder Relay 3 f Date 2014 04 08...
Page 108: ...4 Supervision PCS 9611 Feeder Relay 4 b Date 2014 04 08...
Page 116: ...5 Management Function PCS 9611 Feeder Relay 5 b Date 2014 04 08...
Page 120: ...5 Management Function PCS 9611 Feeder Relay 5 4 Date 2014 04 08...
Page 218: ...9 Configurable Function PCS 9611 Feeder Relay 9 b Date 2014 04 08...
Page 232: ...9 Configurable Function PCS 9611 Feeder Relay 9 14 Date 2014 04 08...
Page 262: ...11 Installation PCS 9611 Feeder Relay 11 b Date 2014 04 08...
Page 272: ...12 Commissioning PCS 9611 Feeder Relay 12 b Date 2014 04 08...
Page 292: ...13 Maintenance PCS 9611 Feeder Relay 13 b Date 2014 04 08...
Page 296: ...14 Decommissioning and Disposal PCS 9611 Feeder Relay 14 b Date 2014 04 08...
Page 298: ...14 Decommissioning and Disposal PCS 9611 Feeder Relay 14 2 Date 2014 04 08...
Page 300: ...15 Manual Version History PCS 9611 Feeder Relay 15 2 Date 2014 04 08...