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14-2
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 “221F” 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 ? 221F <ENTER>
221F <ENTER>
221F <ENTER>
221F <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-221F Primary Quantities to SEL-311B Secondary Quantities
All SEL-221F current settings must be converted from primary to secondary amps to be used in
the SEL-311B. Divide the SEL-221F current setting by the current transformer ratio setting
(CTR) to make the change.
SEL-221F 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-221F 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-221F Relay Settings to SEL-311B Relay Settings
Table 14.1 shows all the SEL-311B Relay settings that must be entered for the relay to perform
protection similar to the SEL-221F when APP = 221F. Calculate each SEL-311B Relay setting
from the corresponding SEL-221F 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-221F in the implementation
of certain protection and logic schemes. For example, reclosing and synchronism check settings
do not correspond exactly between the two relays. Always thoroughly test logic schemes to be
sure they operate as intended.
Содержание SEL-311B
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