BE1-CDS220
Testing And Maintenance
13-11
Table 13-6. Commands To Initiate a Differential Check Record
Command Purpose
A=<reports password if used>
Gain write access to the relay
CS-GROUP=0; CO-GROUP=0
Override logic and make sure that relay is in group 0
RA-DIFF=TRIG;
Trigger current check record
RA-DIFF
Read record and record for group 0
CS-GROUP=1; CO-GROUP=1
Make sure that relay is in group 1
RA-DIFF=TRIG;
Trigger current check record
RA-DIFF
Read record and record for group 1
CS-GROUP=2; CO-GROUP=2
Make sure that relay is in group 2
RA-DIFF=TRIG;
Trigger current check record
RA-DIFF
Read record and record for group 2
CS-GROUP=3; CO-GROUP=3
Make sure that relay is in group 3
RA-DIFF=TRIG;
Trigger current check record
RA-DIFF
Read record and record for group 3
CS-GROUP=0; CO-GROUP=0
Return relay to group 0
CS-GROUP=L; CO-GROUP=L
Return setting group control to logic control
E Exit
NOTE
Table 13-7 is based on internal phase angle compensation and not CT compensation.
Table 13-7. Phase and Zero Sequence Compensated Currents
Angle Compensation And
Ground Source Settings
87A Element
87B Element
87C Element
CT1 CT2
CT1
CT2
CT1 CT2 CT1 CT2
WYE
(NONE)
WYE
(NONE)
IA IA IB IB IC IC
WYE (NONE) WYE G
IA
IA-I0
IB
IB-I0
IC
IC-I0
WYE (NONE) DAB
IA
(IA-IB)/
√
3
IB
(IB-IC)/
√
3
IC
(IC-IA)/
√
3
WYE (NONE) DAC
IA
(IA-IC)/
√
3
IB
(IB-IA)/
√
3
IC
(IC-IB)/
√
3
WYE G
WYE (NONE) IA-I0
IA
IB-I0
IB
IC-I0
IC
WYE
G WYE
G IA-I0 IA-I0 IB-I0 IB-I0 IC-I0 IC-I0
WYE G
DAB
IA-I0
(IA-IB)/
√
3
IB-I0
(IB-IC)/
√
3
IC-I0
(IC-IA)/
√
3
WYE G
DAC
IA-I0
(IA-IC)/
√
3
IB-I0
(IB-IA)/
√
3
IC-I0
(IC-IB)/
√
3
DAB
WYE (NONE) (IA-IB)/
√
3
IA
(IB-IC)/
√
3
IB
(IC-IA)/
√
3
IC
DAB
WYE G
(IA-IB)/
√
3
IA-I0
(IB-IC)/
√
3
IB-I0
(IC-IA)/
√
3
IC-I0
DAB
DAB
(IA-IB)/
√
3 (IA-IB)/
√
3 (IB-IC)/
√
3 (IB-IC)/
√
3 (IC-IA)/
√
3 (IC-IA)/
√
3
DAB
DAC
(IA-IB)/
√
3 (IA-IC)/
√
3 (IB-IC)/
√
3 (IB-IA)/
√
3 (IC-IA)/
√
3 (IC-IB)/
√
3
DAC
WYE (NONE) (IA-IC)/
√
3
IA
(IB-IA)/
√
3
IB
(IC-IB)/
√
3
IC
DAC
WYE G
(IA-IC)/
√
3
IA-I0
(IB-IA)/
√
3
IB-I0
(IC-IB)/
√
3
IC-I0
DAC
DAB
(IA-IC)/
√
3 (IA-IB)/
√
3 (IB-IA)/
√
3 (IB-IC)/
√
3 (IC-IB)/
√
3 (IC-IA)/
√
3
DAC
DAC
(IA-IC)/
√
3 (IA-IC)/
√
3 (IB-IA)/
√
3 (IB-IA)/
√
3 (IC-IB)/
√
3 (IC-IB)/
√
3
Phase Differential Restrained Minimum Pickup Trip
The test current will be a function of the internal angle and zero sequence compensation and the tap
compensation. For the following test, you will apply a single-phase test current to one CT input circuit at a
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...
Page 176: ...7 10 BESTlogic Programmable Logic BE1 CDS220 This page intentionally left blank...
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...
Page 256: ...10 14 Human Machine Interface BE1 CDS220 This page intentionally left blank...
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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