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L30 LINE CURRENT DIFFERENTIAL SYSTEM – INSTRUCTION MANUAL
STATUS
CHAPTER 6: ACTUAL VALUES
6
6.3.17 Incipient fault detector
ACTUAL VALUES
STATUS
INCIPIENT FAULT
INCIPIENT FAULT 1
The number of detected incipient faults for each incipient fault element are displayed here for each phase. These values
can be reset to zero with the
COMMANDS
CLEAR RECORDS
CLEAR INCIPENT FAULT COUNTERS
command.
6.3.18 Remaining connection status
ACTUAL VALUES
STATUS
COMM STATUS REMAINING CONNECT
These values specify the remaining number of TCP connections still available for each protocol. The display depends on the
options applicable to your device. Each time a connection is used, the remaining number of connections decrements.
When released, the remaining number of connections increments. If no connection is made over the specific protocol, the
number equals the maximum number available for the specific protocol.
For example, the maximum number of Modbus TCP connections is 4. Once an EnerVista session is opened on a computer
connected to the UR over Ethernet, the Modbus TCP status shows 3. If the EnerVista application is closed, the Modbus TCP
status shows 4.
For the graphical front panel, the remaining connections refer to TCP connections only.
MMS TCP
— The number of IEC 61850 connections remaining.
PMU TCP
— The maximum number of PMU TCP connections matches the number of aggregators. The maximum number of
aggregators for the N60 is 4. The maximum number for the C60 is 2. The maximum number is 1 for other products with a
PMU. The remaining number of aggregators displays here.
6.3.19 Parallel Redundancy Protocol (PRP)
The Parallel Redundancy Protocol (PRP) defines a redundancy protocol for high availability in substation automation
networks.
ACTUAL VALUES
STATUS
PRP STATUS
INCIPIENT FAULT 1
INCIPIENT FAULT 1
PH A FAULTS: 0
Range: 0 to 65535 in steps of 1
INCIPIENT FAULT 1
PH B FAULTS: 0
Range: 0 to 65535 in steps of 1
INCIPIENT FAULT 1
PH C FAULTS: 0
Range: 0 to 65535 in steps of 1
COMM STATUS
REMAINING CONNECT
MMS TCP(max 5)
5
Range: 0 to 5
MODBUS TCP (max 4)
4
Range: 0 to 4
DNP TCP(max 2)
2
Range: 0 to 2
IEC-104 TCP(max 2)
2
Range: 0 to 2
PMU TCP
1
Range: 1 to 4
SFTP (max 4)
4
Range: 0 to 4
PRP STATUS
Total Rx Port A:
0
Range: 0 to 4G, blank if PRP disabled
Содержание L30
Страница 10: ...x L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL TABLE OF CONTENTS ...
Страница 14: ...1 4 L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL FOR FURTHER ASSISTANCE CHAPTER 1 INTRODUCTION 1 ...
Страница 126: ...3 68 L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL CONNECT TO D400 GATEWAY CHAPTER 3 INSTALLATION 3 ...
Страница 214: ...4 88 L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL FLEXLOGIC DESIGN USING ENGINEER CHAPTER 4 INTERFACES 4 ...
Страница 582: ...7 16 L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL TARGETS MENU CHAPTER 7 COMMANDS AND TARGETS 7 ...
Страница 598: ...9 6 L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL TESTING CHAPTER 9 COMMISSIONING 9 ...
Страница 622: ...10 24 L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL FAULT LOCATOR CHAPTER 10 THEORY OF OPERATION 10 ...
Страница 670: ...A 18 L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL FLEXANALOG ITEMS APPENDIX A FLEXANALOG OPERANDS A ...
Страница 678: ...C 6 L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL COMMAND LINE INTERFACE APPENDIX C COMMAND LINE INTERFACE C ...
Страница 682: ...D 4 L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL REVISION HISTORY APPENDIX D MISCELLANEOUS D ...
Страница 686: ...iv L30 LINE CURRENT DIFFERENTIAL SYSTEM INSTRUCTION MANUAL ABBREVIATIONS ...