12-2
Standard Event Reports and SER
Date Code 20011205
SEL-311B Instruction Manual
Standard Event Report Triggering
The relay triggers (generates) a standard event report when any of the following occur:
·
Relay Word bit TRIP asserts
·
Programmable SEL
OGIC
®
control equation setting ER asserts
·
TRI
(Trigger Event Reports) serial port command executed
·
Output contacts OUT101 through OUT107 pulsed via the serial port or front-panel
PUL
(Pulse Output Contact) command
Relay Word Bit TRIP
Refer to Figure 5.1. If Relay Word bit TRIP asserts to logical 1, an event report is automatically
generated. Thus, any condition that causes a trip does not have to be entered in SEL
OGIC
control
equation setting ER. For example, SEL
OGIC
control equation trip setting TR is unsupervised.
Any trip condition that asserts in setting TR causes the TRIP Relay Word bit to assert
immediately. The Relay Word bit TRIP asserts, and an event report is automatically generated.
Relay Word bit TRIP (in Figure 5.1) is usually assigned to an output contact for tripping a circuit
breaker (e.g., SEL
OGIC
control equation setting OUT101 = TRIP).
Programmable SEL
OGIC
Control Equation Setting ER
The programmable SEL
OGIC
control equation event report trigger setting ER is set to trigger
standard event reports for conditions other than trip conditions. When setting ER sees a logical 0
to logical 1 transition, it generates an event report (if the SEL-311B Relay is not already
generating a report that encompasses the new transition). The factory setting is:
ER = /M2P + /Z2G + /51G + /51Q + /50P1 + /LOP
The elements in this example setting are:
M2P
Zone 2 phase-distance element asserted (see Figure 3.5).
Z2G
Zone 2 ground-distance element asserted. (see Figure 3.8).
51G
Residual ground current above pickup setting 51GP for residual ground
time-overcurrent element 51GT (see Figure 3.19).
51Q
Negative-sequence current above pickup setting 51QP for negative-
sequence time-overcurrent element 51QT (see Figure 3.20).
50P1
Phase current above pickup setting 50P1P for phase overcurrent element
50P1 (see Figure 3.13).
LOP
Loss of potential (LOP) asserts (see Figure 4.1).
Note the rising edge operator / in front of each of these elements. See
Appendix G: Setting
SEL
OGIC
Control Equations
for more information on rising edge operators and SEL
OGIC
control equations in general.
Summary of Contents for SEL-311B
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