1. Up to six independent protection zones
2. Up to twenty-four CT inputs (depends on selected IED hardware)
3. Up to twenty-four feeder bays
4. Up to five bus interconnector (i.e. bus-ties) bays
5. For very large installation the total number of binary inputs and outputs, which can
be fitted in one IED, can also be a limiting factor. For such installations the
possibility to share the disconnector status among the three IEDs using
communication (e.g. GOOSE or LDCM) can be considered.
Five typical examples of busbar arrangements with up to six differential zones are
presented in Figure
. In the next section, the engineering procedure is
described for the example application shown in Figure
to illustrate the engineering
principles.
Z1
Z2
Z5
Z6
QB1
Z3
Z4
QA1
B11
B11
QA1
B12
B14
B13
B11
QA1
QA1
QA1
Feeder 01-08
Bus-Interconnector 1 with two CTs
Bus-Interconnector 2
with one CT
Bus-Interconnector 3
with one CT
Feeder 09-15
QB11
QB21
QB2
QB1
QB2
QB10
QB20
QB2
QB20
QB1
QB10
QB1
QB2
IEC16000142-1.en.vsdx
Sectionalizing disconnectors
IEC16000142 V1 EN-US
Figure 72:
Double busbar station with six protection zones
Z1
Z2
Z3
Z4
QB1
QA1
B11
B11
QA1
B12
B11
QA1
Feeder 01-06
Bus-Interconnector 1 with two CTs
Feeder 07-18
QB11
QB21
QB2
QB1
QB2
QB10
QB20
QB1
QB2
QB9
QB7
QB7
QB9
IEC16000143-1.en.vsdx
Sectionalizing disconnectors
IEC16000143 V1 EN-US
Figure 73:
Double busbar station with breaker bypass facility and four protection
zones
Section 6
1MRK 505 370-UUS A
Differential protection
156
Busbar protection REB670 2.2 ANSI
Application manual
Содержание RELION REB670
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