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ABB RELION 670 SERIES REG670 - Page 361

ABB RELION 670 SERIES REG670
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Imax
Ipu 1.2
k
³ ×
EQUATION1262 V2 EN-US (Equation 175)
where:
1.2 is a safety factor
k is the reset ratio of the protection
Imax is the maximum load current
The load current up to the present situation can be found from operation statistics. The
current setting must remain valid for several years. In most cases, the setting values are
updated once every five years or less often. Investigate the maximum load current that
the equipment on the line can withstand. Study components, such as line conductors,
current transformers, circuit breakers, and disconnectors. The manufacturer of the
equipment normally gives the maximum thermal load current of the equipment.
The maximum load current on the line has to be estimated. There is also a demand that
all faults within the zone that the protection shall cover must be detected by the phase
overcurrent protection. The minimum fault current Iscmin to be detected by the
protection must be calculated. T
aking this value as a base, the highest pickup current
setting can be written according to Equation 176.
Ipu 0.7 Iscmin£ ×
EQUATION1263 V2 EN-US (Equation 176)
where:
0.7 is a safety factor
Iscmin is the smallest fault current to be detected by the overcurrent protection.
As a summary, the pickup current shall be chosen within the interval stated in
Equation
177.
Imax
1.2 Ipu 0.7 Iscmin
k
× £ £ ×
EQUATION1264 V2 EN-US (Equation 177)
The high current function of the overcurrent protection, which only has a short-delay
trip time, must be given a current setting so that the protection is selective to other
protection functions in the power system. It is desirable to have rapid tripping of faults
within a large part of the power system to be protected by the protection (primary
1MRK 502 071-UUS A Section 9
Current protection
Generator protection REG670 2.2 ANSI and Injection equipment REX060, REX061, REX062 355
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