Description Of Configuration D30 - ABB Relion 670 Series Applications Manual

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1MRK 511 401-UEN Rev. K
3.1.1.4

Description of configuration D30

QB1
Other Functions available from the function library
46
BRC PTOC
94
94
94
SMP PTRC
SMP PTRC
SMP PTRC
Optional Functions
50BF 3I>BF
50BF 3I>BF
CC RBRF
CC RBRF
87
HZ PDIF
59N 2(U0>)
59N 2(U0>)
ROV2 PTOV
ROV2 PTOV
90
90
TR8 ATCC
TR8 ATCC
IEC16000194 V3 EN-US
Figure 5:
Four packages have been defined for following applications:
Single breaker (double or single bus) arrangement (A30). See
Double breaker arrangement (B30). See
1 ½ breaker arrangement for a complete diameter (C30). See
Single breaker (double bus) arrangement with PMU functionality (D30). See
Optional functions are available in PCM600 Application Configuration Tool and can be
configured by the user. Interface to analog and binary IO:s are configurable without need of
configuration changes. Analog and control circuits have been pre-defined. Other signals need
to be applied as required for each application. The main differences between the packages
above are the interlocking modules and the number of apparatuses to control.
Bay control REC670
Application manual
WA1
WA2
QB2
WA2_VT
WA1_VT
QC1
QA1
QC2
LINE_CT
QB9
QC9
LINE_VT
Iub>
PD
87
INd/I
7I
52P D
CCS SPVC
DELI SPVC
CC PDSC
84
84
84
1
1
1
0
0
0
TCL YLTC
TCL YLTC
TCM YLTC
VDC PTOV
ITHD ITHD
ITHD ITHD
2(I>/U<)
CHM MHAI
CHM MHAI
CV GAPC
Id>
26
26
θ>
θ>
26/49HS
26/49HS
LOL SPTR
LOL SPTR
LC PTTR
LF PTTR
81
81
81
81
df/dt<>
df/dt<>
81
81
f>
f>
SA PFRC
SA PFRC
SA PTOF
SA PTOF
SA PTUF
SA PTUF
27
27
2(3U<)
2(3U<)
60
60
60
Ud>
Ud>
Ud>
VTHD UTHD
VTHD UTHD
U↑↓
U↑↓
UV2 PTUV
UV2 PTUV
VD SPVC
VD SPVC
VD SPVC
VHM MHAI
VHM MHAI
Block diagram for configuration D30
© Copyright 2017 Hitachi Power Grids. All rights reserved
REC670 D30 – Double busbar in single breaker arrangement with PMU functionality
3
3
3
3
3
3
Control
Control
Control
Control
S CILO
S CILO
S CSWI
S CSWI
S XSWI
S XSWI
3
3
3
3
3
3
Control
Control
Control
Control
S CILO
S CILO
S CSWI
S CSWI
S XSWI
S XSWI
3
3
3
3
3
3
Control
Control
Control
Control
S CILO
S CILO
S CSWI
S CSWI
S XSWI
S XSWI
3
3
3
3
3
3
Control
Control
Control
Control
S CILO
S CILO
S CSWI
S CSWI
S XCBR
S XCBR
3
3
3
3
3
3
Control
Control
Control
Control
S CILO
S CILO
S CSWI
S CSWI
S XSWI
S XSWI
Control
Control
Control
Control
Control
Control
MET
I
MET
MET
Control
Control
Control
S SCBR
S SCBR
S SCBR
S SCBR
S SCBR
S SCBR
S SCBR
S SCBR
S SCBR
C MMXU
C MSQI
C MSQI
3
3
3
3
3
3
Control
Control
Control
Control
S CILO
S CILO
S CSWI
S CSWI
S XSWI
S XSWI
3
3
3
3
3
3
Control
Control
Control
Control
S CILO
S CILO
S CSWI
S CSWI
S XSWI
S XSWI
DFR/SER DR
DFR/SER DR
3
Control
3
3
DRP RDRE
DRP RDRE
Q CBAY
Q CRSV
Q CRSV
MET
MET
MET
U
U
U
MET
MET
MET
V MMXU
V MMXU
V MMXU
V MSQI
V MSQI
V MSQI
DELTAI
7
DELTA
7V_78V
DELTAU
DELV SPVC
DEL SPVC
60
Ud>
85
85
50N
IN>>
EC PSCH
ECRW PSCH
EF PIOC
46I2 4(I2>)
46I2 4(I2>)
51_67 4(3I>)
3Ihp>T
3Ihp>T
NS4 PTOC
NS4 PTOC
OC4 PTOC
f<
f<
67N
67N
IN>
IN>
79
79
5(0
5(0
1)
1)
SDE PSDE
SDE PSDE
SMB RREC
SMB RREC
51V
51V
2(I>/U<)
2(I>/U<)
VR PVOC
VR PVOC
ZCLC PSCH
ZCLC PSCH
Figure 3.1.1.2
GUID-15D86A4C-4D37-432E-8DC2-518814830097 v2
12AI (6I + 6U)
Control
Control
63
71
Control
Control
S SIM6
S SIML
MET
MET
UN
UN
VN MMXU
VN MMXU
Control
Control
MET
MET
UN
UN
Control
Control
25
25
SC/VC
SC/VC
VN MMXU
VN MMXU
SES RSYN
SES RSYN
Control
Control
Isqi
Isqi
MET
MET
P/Q
P/Q
U>/I<
U>/I<
CV MMXN
CV MMXN
FUF SPVC
FUF SPVC
MET W/Varh
MET W/Varh
Control
Control
ETP MMTR
ETP MMTR
Control
Control
Pha sor data
Control
Control
IEEE Std 1344
PMU REP
PMU REP
IEEE Std C37.118
Usqi
Usqi
Usqi
MET
MET
UN
UN
VN MMXU
VN MMXU
27
3U<
3
3
21FL
FL
Control
Control
LMB RFLO
LOV PTUV
R ESIN
R ESIN
4(IN>)
32
P>
37
P<
51N_67N
EF4 PTOC
GOP PDOP
GUP PDUP
59
2(3U>)
50
3I>>
51TF
51TF
OV2 PTOV
PH PIOC
PTR STHR
PTR STHR
49
49
θ>
θ>
90
90
U↑↓
U↑↓
50STB
50STB
3I>STB
3I>STB
STB PTOC
STB PTOC
TR PTTR
TR PTTR
TR1 ATCC
TR1 ATCC
85
85
85
85
ZCV PSOF
ZC PSCH
ZC PSCH
ZCRW PSCH
ZCRW PSCH
IEC16000194-3-en.vsdx
Figure 3.1.1.1
Figure 3.1.1.3
Section 3
Configuration
SEMOD51278-4 v12
Figure 3.1.1.4
57

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