Technical description
2 Protection functions
2.13 Inverse time operation
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Recorded values of the latest eight faults
There are detailed information available of the eight latest
faults: Time stamp, fault value and elapsed delay.
Recorded values of the programmable stages PrgN (99)
Parameter
Value
Unit Description
yyyy-mm-dd
Time stamp of the recording, date
hh:mm:ss.ms
Time stamp, time of day
Flt
pu
Fault value
EDly
%
Elapsed time of the operating time
setting. 100% = trip
SetGrp
1
2
Active setting group during fault
2.13.
Inverse time operation
The inverse time operation - i.e. inverse delay minimum time
(IDMT) type of operation - is available for several protection
functions. The common principle, formulae and graphic
representations of the available inverse delay types are
described in this chapter.
Inverse delay means that the operation time depends on the
measured real time process values during a fault. For example
with an overcurrent stage using inverse delay a bigger a fault
current gives faster operation. The alternative to inverse
delay is definite delay. With definite delay a preset time is
used and the operation time does not depend on the size of a
fault..
Stage specific inverse delay
Some protection functions have their own specific type of
inverse delay. Details of these dedicated inverse delays are
described with the appropriate protection function.
Operation modes
There are three operation modes to use the inverse time
characteristics:
Standard delays
Using standard delay characteristics by selecting a curve
family (IEC, IEEE, IEEE2, RI) and a delay type (Normal
inverse, Very inverse etc). See chapter 2.13.1.
Standard delay formulae with free parameters
Selecting a curve family (IEC, IEEE, IEEE2) and defining
one's own parameters for the selected delay formula. This
mode is activated by setting delay type to „Parameters‟, and
then editing the delay function parameters A ... E. See
chapter 2.13.2.
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