9-2
D30 Line Distance Protection System
GE Multilin
9.1 DISTANCE ELEMENTS
9 THEORY OF OPERATION
9
9.1.3 DISTANCE CHARACTERISTICS
a) DEFINITIONS
The relay shapes its distance characteristics using phase angle comparators and voltage and current phasors estimated as
described in the previous section.
The following definitions pertain to all of the distance functions:
•
I
A
, I
B
, I
C
: phase A, B, and C current phasors.
•
I
G
: ground current from a parallel line.
•
V
A
, V
B
, V
C
: phase A to ground, phase B to ground, and phase C to ground voltage phasors.
•
( )_1: positive-sequence phasor of ( ) derived from the phase quantities.
•
( )_2: negative-sequence phasor of ( ) derived from the phase quantities.
•
( )_0: zero-sequence phasor of ( ) derived from the phase quantities.
•
( )M: memorized value of ( ).
•
Z: reach impedance (
REACH
∠
RCA
).
•
Z
REV:
reverse reach impedance for non-directional applications (
REV REACH
∠
REV REACH RCA
+ 180°).
•
Z
D
: directional characteristic impedance (1
∠
DIR RCA
).
•
Z
R
: right blinder characteristic impedance: Z
R
=
RGT BLD
×
sin (
RGT BLD
RCA
)
×
1
∠
(
RGT BLD RCA
– 90°).
•
Z
L
: left blinder characteristic impedance: Z
L
=
LFT BLD
×
sin (
LFT BLD
RCA
)
×
1
∠
(
LFT BLD RCA
+ 90°).
•
K0: zero-sequence compensating factor: K0 = (
Z0/Z1 MAG
∠
Z0/Z1 ANG
) – 1.
•
K0M: mutual zero-sequence compensating factor: K0M = 1/3 x
Z0M/Z1 MAG
∠
Z0M/Z1 ANG
.
•
Θ
: non-homogeneity angle setting (
NON-HOMOGEN ANG
).
b) DIRECTIONAL MHO CHARACTERISTIC
The dynamic 100% memory polarized mho characteristic is achieved by checking the angle between:
•
AB phase element: (I
A
– I
B
)
×
Z – (V
A
– V
B
)
and
(V
A
– V
B
)_1M
•
BC phase element: (I
B
– I
C
)
×
Z – (V
B
– V
C
)
and
(V
B
– V
C
)_1M
•
CA phase element: (I
C
– I
A
)
×
Z – (V
C
– V
A
)
and
(V
C
– V
A
)_1M
•
A ground element: I
A
×
Z + I_0
×
K0
×
Z + I
G
×
K0M
×
Z – V
A
and
V
A
_1M
•
B ground element: I
B
×
Z + I_0
×
K0
×
Z + I
G
×
K0M
×
Z – V
B
and
V
B
_1M
•
C ground element: I
C
×
Z + I_0
×
K0
×
Z + I
G
×
K0M
×
Z – V
C
and
V
C
_1M
The limit angle of the comparator is adjustable enabling the user to shape the characteristic as a mho or a lens as shown in
the figures below.The memory-polarized mho characteristic has an excellent directional integrity built-in as explained in the
Memory polarization
section.
Содержание D30D00HCHF8AH6AM6BP8BX7A
Страница 10: ...x D30 Line Distance Protection System GE Multilin TABLE OF CONTENTS...
Страница 52: ...2 22 D30 Line Distance Protection System GE Multilin 2 2 SPECIFICATIONS 2 PRODUCT DESCRIPTION 2...
Страница 96: ...3 44 D30 Line Distance Protection System GE Multilin 3 3 DIRECT INPUT OUTPUT COMMUNICATIONS 3 HARDWARE 3...
Страница 126: ...4 30 D30 Line Distance Protection System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4...
Страница 374: ...5 248 D30 Line Distance Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5...
Страница 398: ...6 24 D30 Line Distance Protection System GE Multilin 6 5 PRODUCT INFORMATION 6 ACTUAL VALUES 6...
Страница 410: ...7 12 D30 Line Distance Protection System GE Multilin 7 2 TARGETS 7 COMMANDS AND TARGETS 7...
Страница 444: ...9 24 D30 Line Distance Protection System GE Multilin 9 5 FAULT LOCATOR 9 THEORY OF OPERATION 9...
Страница 576: ...B 102 D30 Line Distance Protection System GE Multilin B 4 MEMORY MAPPING APPENDIX B B...
Страница 616: ...D 10 D30 Line Distance Protection System GE Multilin D 1 IEC 60870 5 104 PROTOCOL APPENDIX D D...
Страница 628: ...E 12 D30 Line Distance Protection System GE Multilin E 2 DNP POINT LISTS APPENDIX E E...
Страница 636: ...F 8 D30 Line Distance Protection System GE Multilin F 3 WARRANTY APPENDIX F F...
Страница 646: ...x D30 Line Distance Protection System GE Multilin INDEX...