F-6
T60 Transformer Protection System
GE Multilin
F.1 DEVICE PROFILE DOCUMENT
APPENDIX F
F
23
cont’d
5
32-Bit Frozen Counter Event with Time
1
(read)
06
(no range, or all)
07, 08
(limited quantity)
129
(response)
130
(unsol. resp.)
17, 28
(index)
6
16-Bit Frozen Counter Event with Time
1
(read)
06
(no range, or all)
07, 08
(limited quantity)
129
(response)
130
(unsol. resp.)
17, 28
(index)
30
0
Analog Input (Variation 0 is used to request
default variation)
1
(read)
22
(assign class)
00, 01
(start-stop)
06
(no range, or all)
07, 08
(limited quantity)
17, 28
(index)
1
32-Bit Analog Input
1
(read)
22
(assign class)
00, 01
(start-stop)
06
(no range, or all)
07, 08
(limited quantity)
17, 28
(index)
129
(response)
00, 01
(start-stop)
17, 28
(index)
(see Note 2)
2
16-Bit Analog Input
1
(read)
22
(assign class)
00, 01
(start-stop)
06
(no range, or all)
07, 08
(limited quantity)
17, 28
(index)
129
(response)
00, 01
(start-stop)
17, 28
(index)
(see Note 2)
3
32-Bit Analog Input without Flag
1
(read)
22
(assign class)
00, 01
(start-stop)
06
(no range, or all)
07, 08
(limited quantity)
17, 28
(index)
129
(response)
00, 01
(start-stop)
17, 28
(index)
(see Note 2)
4
16-Bit Analog Input without Flag
1
(read)
22
(assign class)
00, 01
(start-stop)
06
(no range, or all)
07, 08
(limited quantity)
17, 28
(index)
129
(response)
00, 01
(start-stop)
17, 28
(index)
(see Note 2)
5
short floating point
1
(read)
22
(assign class)
00, 01
(start-stop)
06
(no range, or all)
07, 08
(limited quantity)
17, 28
(index)
129
(response)
00, 01
(start-stop)
17, 28
(index)
(see Note 2)
32
0
Analog Change Event (Variation 0 is used
to request default variation)
1
(read)
06
(no range, or all)
07, 08
(limited quantity)
1
32-Bit Analog Change Event without Time 1
(read)
06
(no range, or all)
07, 08
(limited quantity)
129
(response)
130
(unsol. resp.)
17, 28
(index)
2
16-Bit Analog Change Event without Time 1
(read)
06
(no range, or all)
07, 08
(limited quantity)
129
(response)
130
(unsol. resp.)
17, 28
(index)
3
32-Bit Analog Change Event with Time
1
(read)
06
(no range, or all)
07, 08
(limited quantity)
129
(response)
130
(unsol. resp.)
17, 28
(index)
4
16-Bit Analog Change Event with Time
1
(read)
06
(no range, or all)
07, 08
(limited quantity)
129
(response)
130
(unsol. resp.)
17, 28
(index)
5
short floating point Analog Change Event
without Time
1
(read)
06
(no range, or all)
07, 08
(limited quantity)
129
(response)
130
(unsol. resp.)
17, 28
(index)
7
short floating point Analog Change Event
with Time
1
(read)
06
(no range, or all)
07, 08
(limited quantity)
129
(response)
130
(unsol. resp.)
17, 28
(index)
34
0
Analog Input Reporting Deadband
(Variation 0 is used to request default
variation)
1
(read)
00, 01
(start-stop)
06
(no range, or all)
07, 08
(limited quantity)
17, 28
(index)
1
16-bit Analog Input Reporting Deadband
(default – see Note 1)
1
(read)
00, 01
(start-stop)
06
(no range, or all)
07, 08
(limited quantity)
17, 28
(index)
129
(response)
00, 01
(start-stop)
17, 28
(index)
(see Note 2)
2
(write)
00, 01
(start-stop)
07, 08
(limited quantity)
17, 28
(index)
Table F–2: IMPLEMENTATION TABLE (Sheet 3 of 4)
OBJECT
REQUEST
RESPONSE
OBJECT
NO.
VARIATION
NO.
DESCRIPTION
FUNCTION
CODES (DEC)
QUALIFIER
CODES (HEX)
FUNCTION
CODES (DEC)
QUALIFIER
CODES (HEX)
Note 1:
A default variation refers to the variation responded when variation 0 is requested and/or in class 0, 1, 2, or 3 scans. The default varia-
tions for object types 1, 2, 20, 21, 22, 23, 30, and 32 are selected via relay settings. See the
Communications
section in Chapter 5 for
details. This optimizes the class 0 poll data size.
Note 2:
For static (non-change-event) objects, qualifiers 17 or 28 are only responded when a request is sent with qualifiers 17 or 28, respec-
tively. Otherwise, static object requests sent with qualifiers 00, 01, 06, 07, or 08, will be responded with qualifiers 00 or 01 (for change-
event objects, qualifiers 17 or 28 are always responded.)
Note 3:
Cold restarts are implemented the same as warm restarts – the T60 is not restarted, but the DNP process is restarted.
Содержание T60
Страница 6: ...vi T60 Transformer Protection System GE Multilin TABLE OF CONTENTS ...
Страница 14: ...xiv T60 Transformer Protection System GE Multilin TABLE OF CONTENTS ...
Страница 34: ...1 20 T60 Transformer Protection System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Страница 118: ...3 48 T60 Transformer Protection System GE Multilin 3 3 DIRECT INPUT OUTPUT COMMUNICATIONS 3 HARDWARE 3 ...
Страница 146: ...4 28 T60 Transformer Protection System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Страница 490: ...5 344 T60 Transformer Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Страница 522: ...6 32 T60 Transformer Protection System GE Multilin 6 5 PRODUCT INFORMATION 6 ACTUAL VALUES 6 ...
Страница 536: ...7 14 T60 Transformer Protection System GE Multilin 7 1 COMMANDS 7 COMMANDS AND TARGETS 7 ...
Страница 538: ...8 2 T60 Transformer Protection System GE Multilin 8 1 DIRECTIONAL PRINCIPLE 8 THEORY OF OPERATION 8 ...
Страница 568: ...10 12 T60 Transformer Protection System GE Multilin 10 6 DISPOSAL 10 MAINTENANCE 10 ...
Страница 596: ...A 28 T60 Transformer Protection System GE Multilin A 1 PARAMETER LISTS APPENDIX A A ...
Страница 716: ...B 120 T60 Transformer Protection System GE Multilin B 4 MEMORY MAPPING APPENDIX B B ...
Страница 762: ...E 10 T60 Transformer Protection System GE Multilin E 1 IEC 60870 5 104 PROTOCOL APPENDIX E E ...
Страница 774: ...F 12 T60 Transformer Protection System GE Multilin F 2 DNP POINT LISTS APPENDIX F F ...
Страница 785: ...GE Multilin T60 Transformer Protection System H 9 APPENDIX H H 2 ABBREVIATIONS H Z Impedance Zone ...