14-64
Application Settings for SEL-221 Series Relays
Date Code 20011205
SEL-311B Instruction Manual
Application Settings
From Access Level 2, set the SEL-311B application setting to “2PG10” as shown below:
=>>SET APP TERSE <ENTER>
SET APP TERSE <ENTER>
SET APP TERSE <ENTER>
SET APP TERSE <ENTER>
Line Parameter Settings:
Application (311B,221F,221F3,221C,221-16,2PG10) APP = 311B ? 2PG10 <ENTER>
2PG10 <ENTER>
2PG10 <ENTER>
2PG10 <ENTER>
Enable Settings:
Fault Location(Y,N) EFLOC = Y ? END <ENTER>
END <ENTER>
END <ENTER>
END <ENTER>
Save Changes(Y/N)? Y <ENTER>
Y <ENTER>
Y <ENTER>
Y <ENTER>
Settings saved
=>>
Convert SEL-2PG10 Primary Quantities to SEL-311B Secondary Quantities
All SEL-2PG10 current settings must be converted from primary to secondary amps to be used in
the SEL-311B. Divide the SEL-2PG10 current setting by the current transformer ratio setting
(CTR) to make the change.
SEL-2PG10 impedance settings must be converted from percent of primary line impedance to
secondary impedance in ohms. For example, the Zone 1 distance setting in the SEL-311B (Z1P)
is calculated as
MAG
Z
Z
P
Z
1
100
%
1
1
×
=
where: Z1% is the SEL-2PG10 distance reach setting.
Z1MAG is the SEL-311B positive-sequence line impedance setting in secondary ohms.
Z1P is the SEL-311B Zone 1 reach setting in secondary ohms.
Convert SEL-2PG10 Relay Settings to SEL-311B Relay Settings
Table 14.20 shows all the SEL-311B Relay settings that must be entered for the relay to perform
protection similar to the SEL-2PG10 when APP = 2PG10. Calculate each SEL-311B Relay
setting from the corresponding SEL-2PG10 Relay setting using the formula shown. Instruction
manual references are to subsection headings rather than to section headings.
Please carefully note the difference between the SEL-311B and SEL-2PG10 in the
implementation of certain protection and logic schemes. Always thoroughly test logic schemes
to be sure they operate as intended.
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