10-50
L90 LINE CURRENT DIFFERENTIAL SYSTEM – INSTRUCTION MANUAL
SINGLE-POLE TRIPPING
CHAPTER 10: THEORY OF OPERATION
10
10.5.6 Cross-country fault example
Assume a single pole operation application where L90 relays are used to protect a two-terminal line, (terminals T1 and T2)
using phase and ground distance zone 1, 2, and 3 elements in a permissive over-reaching transfer trip scheme. The
performance of the system with one, two, and four-bit communications channels is outlined for a mid-line phase A-to-
ground fault and a co-incident phase B-to-ground fault just behind terminal T2. Assume also that the reclosers are enabled
and reset.
At T1 the following protection elements pick up:
•
Ground Distance Zone 1, 2, and 3 for an AG fault
•
Ground Distance Zone 2 and 3 for a BG fault
•
Phase Distance Zone 2 and 3 for an AB fault
At T1, the phase selector determines the fault is type ABG. This response is independent from the distance elements; the
Phase Selector sees two forward faults.
At T2, the following protection elements pick up:
•
Ground Distance Zone 1, 2, and 3 for an AG fault
At T2 the phase selector determines the fault is type AG. The reverse BG fault is likely to be ignored.
If a one-bit channel is used, terminal T1 trips three poles but terminal T2 trips phase A only, which is undesirable. See the
table.
Table 10-34: One-bit channel tripping
If a two-bit channel is used, both terminals trip phase A only, which is desired. See the following table.
Table 10-35: Two-bit channel tripping
If a four-bit channel is used, both terminals trip phase A only, which is desired. See the following table.
Table 10-36: Four-bit channel tripping
Terminal
Remote data
Local data
Bit pattern received
Remote
determination of
fault type
Local determination
of fault type
Trip output
RX1
T1
1
Any
MULTI-P (ABG)
Trip Three Phases
T2
1
Any
AG
Trip Phase A
Terminal
Remote data
Local data
Bit pattern received
Remote
determination of
fault type
Local determination
of fault type
Trip output
RX1
RX2
T1
1
0
AG
ABG
Trip Phase A
T2
1
1
ABG
AG
Trip Phase A
Terminal
Remote data
Local data
Bit pattern received
Remote
determination Of
fault type
Local determination
of fault type
Trip output
RX1
RX2
RX3
RX4
T1
0
0
0
1
AG
ABG
Trip Phase A
T2
1
0
0
0
ABG
AG
Trip Phase A
Содержание L90
Страница 14: ...1 4 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL FOR FURTHER ASSISTANCE CHAPTER 1 INTRODUCTION 1 ...
Страница 68: ...2 54 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL SPECIFICATIONS CHAPTER 2 PRODUCT DESCRIPTION 2 ...
Страница 136: ...3 68 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL CONNECT TO D400 GATEWAY CHAPTER 3 INSTALLATION 3 ...
Страница 224: ...4 88 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL FLEXLOGIC DESIGN USING ENGINEER CHAPTER 4 INTERFACES 4 ...
Страница 692: ...6 36 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL PRODUCT INFORMATION CHAPTER 6 ACTUAL VALUES 6 ...
Страница 708: ...7 16 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL TARGETS MENU CHAPTER 7 COMMANDS AND TARGETS 7 ...
Страница 742: ...9 6 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL TESTING CHAPTER 9 COMMISSIONING 9 ...
Страница 804: ...10 62 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL FAULT LOCATOR CHAPTER 10 THEORY OF OPERATION 10 ...
Страница 872: ...C 6 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL COMMAND LINE INTERFACE APPENDIX C COMMAND LINE INTERFACE C ...
Страница 878: ...D 6 L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL REVISION HISTORY APPENDIX D MISCELLANEOUS D ...
Страница 882: ...iv L90 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL ABBREVIATIONS ...
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