BE1-CDS220
Testing And Maintenance
13-17
IA2
B9
B10
IA1
B1
B2
IB2
B11
B12
IB1
B3
B4
IC2
B13
B14
IC1
B5
B6
IA2
B9
B10
IA1
B1
B2
IB2
B11
B12
IB1
B3
B4
IC2
B13
B14
IC1
B5
B6
IA2
B9
B10
IA1
B1
B2
IB2
B11
B12
IB1
B3
B4
IC2
B13
B14
IC1
B5
B6
A
B
C
D2857-32.vsd
05-05-00
Figure 13-10. Test Connection Diagrams for Table 13-11
D2857-33.vsd
05-05-00
IA2
B9
B10
IA1
B1
B2
IB2
B11
B12
IB1
B3
B4
IC2
B13
B14
IC1
B5
B6
IA2
B9
B10
IA1
B1
B2
IB2
B11
B12
IB1
B3
B4
IC2
B13
B14
IC1
B5
B6
IA2
B9
B10
IA1
B1
B2
IB2
B11
B12
IB1
B3
B4
IC2
B13
B14
IC1
B5
B6
A
B
C
Figure 13-11. Test Connection Diagrams for Table 13-11
NOTE
It is necessary to convert the slope setting from percent to decimal for use in the
equations used in Step 4-4.
Step 4-4. Check that the starting (balanced) test current will not result in a minimum pickup trip. Use the
appropriate equation under the column heading Min PU? in Figure 13-3. If it will result in a
minimum pickup, adjust both starting test currents upward until they are above minimum
pickup. Use the same adjustment factor on both currents such that they remain balanced.
Step 4-5. Record the phases that are expected to respond.
Step 4-6. Verify that the current sources are configured such that they are 180 degrees out of phase with
each other.
Step 5.
Calculate test points (restrained trip) for restrained slope test.
The test point at which a trip should occur will depend upon whether you set the relay to operate on
percent of maximum restraint current or percent of average restraint current. It will also depend upon
whether the Iop (differential current) is to be developed by increasing one current source from balance or
by decreasing one current source from balance.
Summary of Contents for BE1-CDS220
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Page 10: ...viii Introduction BE1 CDS220 This page intentionally left blank...
Page 36: ...ii Quick Start BE1 CDS220 This page intentionally left blank...
Page 48: ...ii Input And Output Functions BE1 CDS220 This page intentionally left blank...
Page 66: ...iv Protection and Control BE1 CDS220 This page intentionally left blank...
Page 112: ...ii Metering BE1 CDS220 This page intentionally left blank...
Page 116: ...5 4 Metering BE1 CDS220 This page intentionally left blank...
Page 166: ...ii BESTlogic Programmable Logic BE1 CDS220 This page intentionally left blank...
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Page 234: ...8 56 Application BE1 CDS220 This page intentionally left blank...
Page 236: ...ii Security BE1 CDS220 This page intentionally left blank...
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Page 242: ...ii Human Machine Interface BE1 CDS220 This page intentionally left blank...
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Page 258: ...ii ASCII Command Interface BE1 CDS220 This page intentionally left blank...
Page 422: ...14 32 BESTCOMS Software BE1 CDS220 This page intentionally left blank...
Page 424: ...ii Time Current Characteristics BE1 CDS220 This page intentionally left blank...
Page 452: ...ii Terminal Communication BE1 CDS220 This page intentionally left blank...
Page 456: ...C 4 Terminal Communication BE1 CDS220 This page intentionally left blank...
Page 458: ...ii Settings Calculations BE1 CDS220 This page intentionally left blank...
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