
5.3.1
ZERO SEQUENCE POLARIZING
Residual voltage is generated during earth faults. This zero-sequence quantity can be used to polarize the
directional decision of Aided DEF protection. This device can derive residual voltage if connected to a suitable
voltage transformer (VT) arrangement.
For the Aided DEF to use a derived voltage signal, the three phase voltage inputs must be supplied from a 5-limb
VT, or from three single-phase VTs having the primary star-point earthed. These VT arrangements allow the
passage of residual flux and hence allow the device to derive the required residual voltage. A 3-limb VT has no
path for residual flux and is therefore unsuitable for zero-sequence Polarization.
Small levels of residual voltage may be present under normal system conditions due to system imbalances, VT
inaccuracies and device tolerances. You can set a threshold (DEF VNPol Set) to provide stability against Aided DEF
operation under these conditions. Residual voltage (Vres) is nominally 180° out of phase with residual current so
Aided DEF elements are polarized from the -Vres quantity. This 180° phase shift is automatically compensated in
this device.
For products designed to control dual circuit breaker applications you can choose to re-allocate the second check-
synchronism VT to provide a measured voltage input to the Aided DEF function. To do this you need to set VT2
Selection to
Broken Delta
in the CT AND VT RATIOS COLUMN. This then reveals the DEF Vnpol Input setting in
the AIDED DEF column which can be set to
Measured
or
Derived
.
5.3.1.1
VIRTUAL CURRENT POLARIZING
A technique called Virtual Current Polarizing can allow the Aided DEF protection to operate even if the Polarizing
voltage is below the DEF VNPol Set threshold. If the superimposed current phase selector associated with the
Distance protection has identified a faulted phase, for example phase A, it removes that phase voltage from the
residual calculation Va + Vb + Vc, leaving only Vb + Vc. The resultant Polarizing voltage has a large magnitude and
is in the same direction as –Vres. This allows the protection to be applied even where very solid earthing behind
the protection prevents residual voltage from being developed.
This technique of subtracting the faulted phase is described as Virtual Current Polarizing because it removes the
need to use current Polarizing from a current transformer (CT) in a transformer star (wye)-earth connection behind
the device.
If you don’t want to use this feature you should set Virtual I Pol to
Disabled
so that removal of the faulted
phase voltage from the residual voltage calculation does not happen. The Aided DEF protection is then Polarized
by the residual voltage only.
The directional criteria with zero sequence (virtual current) Polarization are as follows:
Directional forward
90° < (angle(VNpol) +180°) - (angle(IN )- RCA) < 90°
Directional reverse
90° > (angle(VNpol) +180° - (angle(IN) - RCA) > 90°
This is represented in the following figure:
P446SV
Chapter 8 - Carrier Aided Schemes
P446SV-TM-EN-1
185
Summary of Contents for MiCOM P40 Agile
Page 2: ......
Page 24: ...Contents P446SV xxii P446SV TM EN 1 ...
Page 33: ...CHAPTER 1 INTRODUCTION ...
Page 34: ...Chapter 1 Introduction P446SV 2 P446SV TM EN 1 ...
Page 46: ...Chapter 1 Introduction P446SV 14 P446SV TM EN 1 ...
Page 47: ...CHAPTER 2 SAFETY INFORMATION ...
Page 48: ...Chapter 2 Safety Information P446SV 16 P446SV TM EN 1 ...
Page 60: ...Chapter 2 Safety Information P446SV 28 P446SV TM EN 1 ...
Page 61: ...CHAPTER 3 HARDWARE DESIGN ...
Page 62: ...Chapter 3 Hardware Design P446SV 30 P446SV TM EN 1 ...
Page 88: ...Chapter 3 Hardware Design P446SV 56 P446SV TM EN 1 ...
Page 89: ...CHAPTER 4 SOFTWARE DESIGN ...
Page 90: ...Chapter 4 Software Design P446SV 58 P446SV TM EN 1 ...
Page 101: ...CHAPTER 5 CONFIGURATION ...
Page 102: ...Chapter 5 Configuration P446SV 70 P446SV TM EN 1 ...
Page 124: ...Chapter 5 Configuration P446SV 92 P446SV TM EN 1 ...
Page 125: ...CHAPTER 6 SAMPLED VALUE OPERATION ...
Page 126: ...Chapter 6 Sampled Value Operation P446SV 94 P446SV TM EN 1 ...
Page 136: ...Chapter 6 Sampled Value Operation P446SV 104 P446SV TM EN 1 ...
Page 137: ...CHAPTER 7 DISTANCE PROTECTION ...
Page 138: ...Chapter 7 Distance Protection P446SV 106 P446SV TM EN 1 ...
Page 196: ...Chapter 7 Distance Protection P446SV 164 P446SV TM EN 1 ...
Page 197: ...CHAPTER 8 CARRIER AIDED SCHEMES ...
Page 198: ...Chapter 8 Carrier Aided Schemes P446SV 166 P446SV TM EN 1 ...
Page 240: ...Chapter 8 Carrier Aided Schemes P446SV 208 P446SV TM EN 1 ...
Page 241: ...CHAPTER 9 NON AIDED SCHEMES ...
Page 242: ...Chapter 9 Non Aided Schemes P446SV 210 P446SV TM EN 1 ...
Page 256: ...Chapter 9 Non Aided Schemes P446SV 224 P446SV TM EN 1 ...
Page 257: ...CHAPTER 10 POWER SWING FUNCTIONS ...
Page 258: ...Chapter 10 Power Swing Functions P446SV 226 P446SV TM EN 1 ...
Page 281: ...CHAPTER 11 AUTORECLOSE ...
Page 282: ...Chapter 11 Autoreclose P446SV 250 P446SV TM EN 1 ...
Page 376: ...Chapter 11 Autoreclose P446SV 344 P446SV TM EN 1 ...
Page 377: ...CHAPTER 12 CB FAIL PROTECTION ...
Page 378: ...Chapter 12 CB Fail Protection P446SV 346 P446SV TM EN 1 ...
Page 389: ...CHAPTER 13 CURRENT PROTECTION FUNCTIONS ...
Page 390: ...Chapter 13 Current Protection Functions P446SV 358 P446SV TM EN 1 ...
Page 416: ...Chapter 13 Current Protection Functions P446SV 384 P446SV TM EN 1 ...
Page 417: ...CHAPTER 14 VOLTAGE PROTECTION FUNCTIONS ...
Page 418: ...Chapter 14 Voltage Protection Functions P446SV 386 P446SV TM EN 1 ...
Page 431: ...CHAPTER 15 FREQUENCY PROTECTION FUNCTIONS ...
Page 432: ...Chapter 15 Frequency Protection Functions P446SV 400 P446SV TM EN 1 ...
Page 438: ...Chapter 15 Frequency Protection Functions P446SV 406 P446SV TM EN 1 ...
Page 439: ...CHAPTER 16 MONITORING AND CONTROL ...
Page 440: ...Chapter 16 Monitoring and Control P446SV 408 P446SV TM EN 1 ...
Page 476: ...Chapter 16 Monitoring and Control P446SV 444 P446SV TM EN 1 ...
Page 477: ...CHAPTER 17 SUPERVISION ...
Page 478: ...Chapter 17 Supervision P446SV 446 P446SV TM EN 1 ...
Page 490: ...Chapter 17 Supervision P446SV 458 P446SV TM EN 1 ...
Page 491: ...CHAPTER 18 DIGITAL I O AND PSL CONFIGURATION ...
Page 492: ...Chapter 18 Digital I O and PSL Configuration P446SV 460 P446SV TM EN 1 ...
Page 504: ...Chapter 18 Digital I O and PSL Configuration P446SV 472 P446SV TM EN 1 ...
Page 505: ...CHAPTER 19 FIBRE TELEPROTECTION ...
Page 506: ...Chapter 19 Fibre Teleprotection P446SV 474 P446SV TM EN 1 ...
Page 522: ...Chapter 19 Fibre Teleprotection P446SV 490 P446SV TM EN 1 ...
Page 523: ...CHAPTER 20 ELECTRICAL TELEPROTECTION ...
Page 524: ...Chapter 20 Electrical Teleprotection P446SV 492 P446SV TM EN 1 ...
Page 534: ...Chapter 20 Electrical Teleprotection P446SV 502 P446SV TM EN 1 ...
Page 535: ...CHAPTER 21 COMMUNICATIONS ...
Page 536: ...Chapter 21 Communications P446SV 504 P446SV TM EN 1 ...
Page 606: ...Chapter 21 Communications P446SV 574 P446SV TM EN 1 ...
Page 607: ...CHAPTER 22 CYBER SECURITY ...
Page 608: ...Chapter 22 Cyber Security P446SV 576 P446SV TM EN 1 ...
Page 625: ...CHAPTER 23 INSTALLATION ...
Page 626: ...Chapter 23 Installation P446SV 594 P446SV TM EN 1 ...
Page 637: ...CHAPTER 24 COMMISSIONING INSTRUCTIONS ...
Page 638: ...Chapter 24 Commissioning Instructions P446SV 606 P446SV TM EN 1 ...
Page 695: ...CHAPTER 25 MAINTENANCE AND TROUBLESHOOTING ...
Page 696: ...Chapter 25 Maintenance and Troubleshooting P446SV 664 P446SV TM EN 1 ...
Page 712: ...Chapter 25 Maintenance and Troubleshooting P446SV 680 P446SV TM EN 1 ...
Page 713: ...CHAPTER 26 TECHNICAL SPECIFICATIONS ...
Page 714: ...Chapter 26 Technical Specifications P446SV 682 P446SV TM EN 1 ...
Page 741: ...APPENDIX A ORDERING OPTIONS ...
Page 742: ...Appendix A Ordering Options P446SV P446SV TM EN 1 ...
Page 744: ...Appendix A Ordering Options P446SV A2 P446SV TM EN 1 ...
Page 745: ...APPENDIX B SETTINGS AND SIGNALS ...
Page 746: ...Appendix B Settings and Signals P446SV P446SV TM EN 1 ...
Page 954: ...Appendix B Settings and Signals P446SV B208 P446SV TM EN 1 ...
Page 955: ...APPENDIX C WIRING DIAGRAMS ...
Page 956: ...Appendix C Wiring Diagrams P446SV P446SV TM EN 1 ...
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