ABB Relion REC670 Applications Manual page 54

Bay control version 2.1 iec
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Section 3
Configuration
Control, measuring and interlocking is fully configured, including communication with other
bays such as other lines and the bus coupler over GOOSE.
The following should be noted. The configuration is made with the binary input and binary
output boards in the basic IED delivery. In many cases this is sufficient, in other cases, for
example with full control of all apparatuses included more IO cards are required. Our proposal
for a full version with control is to use three binary input modules and two binary output
modules. For systems without Substation Automation a second binary output board might be
required.
LINE1_QC9
LINE2_QC9
Other Functions available from the function library
52PD
CC PDSC
63
Optional Functions
87
HZ PDIF
37
GUP PDUP
90
TR8 ATCC
IEC05000839 V4 EN-US
Figure 5:
48
WA1
QB1
WA1_VT
WA1_QA1
WA1_CT
WA1_QB6
LINE1_QB9
QB61
LINE1_VT
TIE_QA1
TIE_CT
QB62
LINE2_QB9
WA2_QB6
WA2_CT
LINE2_VT
WA2_QA1
WA2_VT
QB2
WA2
PD
46
Iub>
60
Ud>
27
BRC PTOC
VDC PTOV
LOV PTUV
71
3
Control
S SIMG
S SIML
R ESIN
Id>
50
3I>>
51_67 4(3I>)
50N
PH PIOC
OC4 PTOC
EF PIOC
P<
32
P>
27
2(3U<)
59
GOP PDOP
UV2 PTUV
OV2 PTOV
U??
21FL
FL
85
85
LMB RFLO
ZC PSCH
ZCRW PSCH
Configuration diagram for configuration C30
REC670C30 – Complete one-and a half breaker diameter arrangement 24AI (6I + 6U, 6I+6U)
3
Control
3
Control
3
Control
S CILO
S CSWI
S XSWI
3
Control
3
Control
3
Control
MET
S CILO
S CSWI
S XCBR
VN MMXU
MET
I
MET
S
C MMXU
C MSQI
3
Control
3
Control
3
Control
S CILO
S CSWI
S XSWI
3
Control
3
Control
3
Control
S CILO
S CSWI
S XSWI
3
Control
3
Control
3
Control
S CILO
S CSWI
S XSWI
3
Control
3
Control
3
Control
S CILO
S CSWI
S XSWI
3
Control
3
Control
3
Control
MET
S CILO
S CSWI
S XCBR
V MMXU
MET
I
MET
S
C MMXU
C MSQI
3
Control
3
Control
3
Control
S CILO
S CSWI
S XSWI
3
Control
3
Control
3
Control
S CILO
S CSWI
S XSWI
3
Control
3
Control
3
Control
DFR/SER DR
S CILO
S CSWI
S XSWI
DRP RDRE
3
Control
3
Control
3
Control
MET
S CILO
S CSWI
S XSWI
V MMXU
3
Control
3
Control
3
Control
S CILO
S CSWI
S XCBR
3
Control
3
Control
3
Control
MET
S CILO
S CSWI
S XSWI
VN MMXU
3
Control
3
Control
Q CBAY
Q CRSV
3U<
84
84
87
TCM YLTC
TCL YLTC
CCS SPVC
IN>>
4(IN>)
46I2
4(I2>)
67N
51N_67N
EF4 PTOC
NS4 PTOC
SDE PSDE
2(3U>)
59N 2(U0>)
81
f<
81
ROV2 PTOV
SA PTUF
SA PTOF
85
85
ZCLC PSCH
EC PSCH
ECRW PSCH
UN
25
SC
25
SC
25
SC/VC
SES RSYN
SES RSYN
SES RSYN
Isqi
MET
P/Q
U>/I<
CV MMXN
FUF SPVC
MET W/Varh
ETP MMTR
U
MET
Usqi
MET
UN
V MSQI
VN MMXU
Isqi
MET
P/Q
U>/I<
CV MMXN
FUF SPVC
MET W/Varh
ETP MMTR
U
MET
Usqi
MET
UN
V MSQI
VN MMXU
UN
INd/I
94
1
0
SMP PTRC
60
Ud>
VD SPVC
? >
? >
? >
IN>
26
26
49
LC PTTR
LF PTTR
TR PTTR
f>
81
df/dt<>
U</I>
90
U??
SA PFRC
CV GAPC
TR1 ATCC
?
79
50BF 3I>BF
5(0
1)
SMB RREC
CC RBRF
S SCBR
1MRK 511 358-UEN A
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