6-30
L90 LINE CURRENT DIFFERENTIAL SYSTEM – INSTRUCTION MANUAL
RECORDS
CHAPTER 6: ACTUAL VALUES
6
where
R
F
is the fault resistance in secondary ohms
Z
1
is the line positive-sequence impedance
D
pu
is the distance to fault in per unit
When the single-ended fault location method is applied, the fault loop impedance is calculated as per the following
equation.
Z
loop
= V
loop
/ I
loop
Eq. 6-9
The table defines the loop voltage and current.
Table 6-3: Quantities used to calculate fault loop impedances
Where VA, VB, VC are phase voltage phasors in secondary volts; IA, IB, IC are current phasors in secondary amps, I0 is the
zero sequence current phasors in secondary amps; and IG is the ground current from the parallel line scaled to the source
phase CT in secondary amps. Z0/Z1 is the zero sequence impedance to positive sequence impedance ratio, and Z0M/Z1 is
mutual zero sequence impedance to positive sequence impedance ratio.
Depending on the number of terminals and the location method applied, the fault resistance and loop impedance are
reported in the different ways as tabulated in the following table.
Table 6-4: Report mechanism for fault resistance and loop impedance
6.5.2 Event records
6.5.2.1 Enhanced and standard front panels
ACTUAL VALUES
RECORDS
EVENT RECORDS
Fault type
V
loop
I
loop
AG
VA
IA + (Z0/Z1-1)*I0 + Z0M/Z1*IG/3
BG
VB
IB + (Z0/Z1-1)*I0 + Z0M/Z1*IG/3
CG
VC
IC + (Z0/Z1-1)*I0 + Z0M/Z1*IG/3
AB, ABG
VA – VB
IA - IB
BC, BCG
VB – VC
IB - IC
CA, CAG
VC – VA
IC - IA
ABC
Average of AB, BC, CA loop impedances
VTs of the
FAULT REPORT 1 SOURCE
must be connected in Wye or
VT SUBSTITUTION
must be set correctly for the Delta
connected VT to display the loop impedance and fault resistance for single phase-to-ground faults.
For the application of partially parallel circuits and in the case of single phase-to-ground faults, the reported fault
resistance and fault loop impedance may not be accurate even the compensation method is applied.
Method
Number of terminals Fault resistance
Loop impedance
Multi-ended
2
Report at two terminals, seen from the individual end
3
Only report at the line terminal of the faulted segment. At the other two terminals, results are
not applicable, set values to the maximum number 9999.99.
Single-ended
2
Not applicable, set to the maximum number
9999.99
Report at two terminals, seen from the
individual end
3
Not applicable, set to the maximum number
9999.99
Report at all terminals, but the value is only
accurate at the line terminal of the faulted
segment
EVENT RECORDS
EVENT: XXX
XXX
Date and time stamps
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 ...
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