Commissioning Aids; Description - Siemens SIPROTEC 6MU805 User Manual

Merging unit
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No.
2162
SysTemp =
2233
Ux =
2241
LON =
2242
LAT =
2243
ALT =
30701
P,L1
30702
P,L2
30703
P,L3
30704
Q,L1
30705
Q,L2
30706
Q,L3
30707
PF,L1
30708
PF,L2
30709
PF,L3
2.3.4

Commissioning Aids

During test mode or commissioning, the device information transmitted to a central control or storage device
can be influenced. There are tools available for testing the system interface (port F) and the binary inputs and
outputs of the device.
Applications
• Test Mode
• Commissioning

2.3.4.1 Description

Comissioning Support for IEC 61850-9-2 Sampled Values
Via the DIGSI device control it can be tested whether messages are transmitted correctly or not.
A dialog box shows the texts of all indications which were allocated to the system interface (port F) in the DIGSI
matrix. In another column of the dialog box, you can define a value for the indications to be tested (e.g. indica-
tion ON / indication OFF). After entering password no. 6 (for hardware test menus), the corresponding indica-
tion is issued and can be read out in the event log of the 6MU805 and in the substation control center.
The procedure is described in detail in Chapter "Mounting and Commissioning".
Creating Oscillographic Recordings for Tests
During commissioning, energization sequences should be carried out to check the analog data. Oscillographic
event recordings contain the maximum information of the analog data.
Along with the capability of storing fault recordings via binary indications, the 6MU805 also has the capability
of capturing the same data when commands are given to the device via the service program DIGSI, the serial
interface, or a binary input. For the latter, event ">Trig.Wave.Cap." must be allocated to a binary input. Triggering
for the oscillographic recording then occurs, for instance, via the binary input.
SIPROTEC, 6MU805, Manual
C53000-G1140-C380-5, Release date 06.2018
Information
Type of Information
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2.3 Additional Functions
Comments
System Temperature
Ux =
GPS Module Position Longitude (deg, dec)
GPS Module Position Latitude (deg, dec)
GPS Module Position Altitude (m)
P (active power) phase a
P (active power) phase b
P (active power) phase c
Q (reactive power) phase a
Q (reactive power) phase b
Q (reactive power) phase c
Power Factor, phase a
Power Factor, phase b
Power Factor, phase c
Functions
45

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