P54x/EN AP/La4
Application Notes
(AP) 6-26
MiCOM P543, P544, P545 & P546
AP
To resume, if area 1<area 2, the system will stay in synchronism. This swing is usually
called a recoverable power swing. If, on contrary, the system passes point G with a further
increase in angle difference between sending and receiving ends, the system drifts out of
synchronism and becomes unstable. This will happen if the initial power transfer Po was set
too high in Figure 6, so that the area 1 is greater than area 2. This power swing is not
recoverable and is usually called
out of step
or
out of synchronism
or
pole slip
condition.
After this, only system separation and re-synchronizing of the machines can restore normal
system operation.
In Figure 6, the point G is shown at approximately 120° deg, but it is not true in all cases. If,
for example the pre-fault transmitted power (Po) was too high and if the fault clearance was
slow, the area 1 will be greater so for the system to recover the angle
θ
would be close to 90
deg. On contrarily, if the pre-fault transmitted power Po was low and fault clearance fast, the
area 1 will be small, so that based on area comparison, the angle
θ
could go closer to 180
deg and the system will still remain stable.
The actual angle difference at which system will become unstable could only be determined
by a particular system studies, but for the purpose of settings recommendation where ‘OST’
setting is selected, the typical angle beyond which system will not recover is assumed to be
120 deg.
2.3.17.1 Setting option recommendation (Distance option only)
The relay provides 4 different setting options:
1. Disabled
2.
Predictive OST
3. OST
4.
Predictive OST or OST
Set
Option 1
on all lines except the line where tripping due to unrecoverable power
oscillations is required or for the system where power oscillations are not severe - mainly in
well interconnected systems operating with 3 phase tripping.
Setting
Option 2
(and 4) is the best setting option from the system point of view, perhaps not
being widely used in the past. Some utilities prefer an early system split to minimize the
angle shift between ends and maximize the chances for the remaining two halves to stabilize
as quickly as possible. Special care must be taken when this method is applied to ensure
that the actual circuit breaker opening does not occur when the internal voltages at two ends
are in anti phase. This is due to the fact that most breakers are not designed to interrupt at
double nominal voltage and any attempt to break at that point would lead to flash over and
possible circuit breaker damage. The fact is that setting Option 2 (and 4) will be mainly
applied do detect and trip fast power oscillations. When this is coupled with a typical 2 cycle
circuit breaker operating time, the two voltages angles may rapidly move in opposite
directions at the time of opening the circuit breaker. Therefore, if this setting option is
chosen, the above facts must be taken into account so that the actual CB opening must
occur well before the angle difference between two ends approaches 180 degrees. On that
basis, accurate settings have to be determined based on exhaustive system studies.
Setting
Option 3
is the most commonly used approach. Once the Out of Step conditions are
detected, the OST command will split the system at pre-determined points. The slight
disadvantages of this method in comparison to Option 2 (and 4) is that the power oscillation
will escalate further, thus causing more difficulties for the split parts to remain stable but the
advantage is that the timing of the circuit breaker operation (‘tripping angle’) is easily
controlled and the decision to split the system will be correct even if errors were made in the
system data and setting parameters. This extra security is achieved by measuring and
confirming the change of polarity of the resistive part of positive sequence impedance on
zone 5 exit (reset).
Содержание MiCOM P54 Series
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Страница 5: ...Safety Section P54x EN SS H11 SS SAFETY SECTION...
Страница 6: ...P54x EN SS H11 Safety Section SS...
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Страница 16: ...P54x EN IT La4 Introduction MiCOM P543 P544 P545 P546 IT...
Страница 18: ...P54x EN IT La4 Introduction IT 1 2 MiCOM P543 P544 P545 P546 IT...
Страница 28: ...P54x EN IT La4 Introduction IT 1 12 MiCOM P543 P544 P545 P546 IT...
Страница 30: ...P54x EN TD La4 Technical Data MiCOM P543 P544 P545 P546 TD...
Страница 58: ...P54x EN GS La4 Getting Started MiCOM P543 P544 P545 P546 GS...
Страница 78: ...P54x EN ST La4 Settings MiCOM P543 P544 P545 P546 ST...
Страница 172: ...P54x EN ST La4 Settings ST 4 94 MiCOM P543 P544 P545 P546 ST...
Страница 174: ...P54x EN OP La4 Operation MiCOM P543 P544 P545 P546 OP...
Страница 362: ...P54x EN OP La4 Operation OP 5 188 MiCOM P543 P544 P545 P546 OP Figure 118 Auto relose timing diagram leader follower 1ph...
Страница 432: ...P54x EN OP B94 Operation OP 5 260 MiCOM P543 P544 P545 P546 OP Figure 61 CB2 synch check signals...
Страница 442: ...P54x EN OP B94 Operation OP 5 270 MiCOM P543 P544 P545 P546 OP...
Страница 444: ...P54x EN AP La4 Application Notes MiCOM P543 P544 P545 P546 AP...
Страница 534: ...P54x EN PL La4 Programmable Logic MiCOM P543 P544 P545 P546 PL...
Страница 538: ...P54x EN PL La4 Programmable Logic PL 7 4 MiCOM P543 P544 P545 P546 PL...
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Страница 603: ...Programmable Logic P54x EN PL La4 MiCOM P543 P544 P545 P546 PL 7 69 Output Contacts PL...
Страница 606: ...P54x EN PL La4 Programmable Logic PL 7 72 MiCOM P543 P544 P545 P546 PL...
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Страница 642: ...P54x EN PL La4 Programmable Logic PL 7 108 MiCOM P543 P544 P545 P546 Output Contacts PL...
Страница 643: ...Programmable Logic P54x EN PL La4 MiCOM P543 P544 P545 P546 PL 7 109 LEDs PL...
Страница 644: ...P54x EN PL La4 Programmable Logic PL 7 110 MiCOM P543 P544 P545 P546 PL...
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Страница 656: ...P54x EN PL La4 Programmable Logic PL 7 122 MiCOM P543 P544 P545 P546 LEDs PL...
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Страница 671: ...Programmable Logic P54x EN PL La4 MiCOM P543 P544 P545 P546 PL 7 137 PL...
Страница 672: ...P54x EN PL La4 Programmable Logic PL 7 138 MiCOM P543 P544 P545 P546 PL...
Страница 676: ...P54x EN PL La4 Programmable Logic PL 7 142 MiCOM P543 P544 P545 P546 PL...
Страница 681: ...Programmable Logic P54x EN PL La4 MiCOM P543 P544 P545 P546 PL 7 147 Output Contacts PL...
Страница 688: ...P54x EN PL La4 Programmable Logic PL 7 154 MiCOM P543 P544 P545 P546 PL...
Страница 689: ...Programmable Logic P54x EN PL La4 MiCOM P543 P544 P545 P546 PL 7 155 PL...
Страница 690: ...P54x EN PL La4 Programmable Logic PL 7 156 MiCOM P543 P544 P545 P546 PL...
Страница 696: ...P54x EN PL La4 Programmable Logic PL 7 162 MiCOM P543 P544 P545 P546 Output Contacts PL...
Страница 698: ...P54x EN PL La4 Programmable Logic PL 7 164 MiCOM P543 P544 P545 P546 PL...
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Страница 706: ...P54x EN PL La4 Programmable Logic PL 7 172 MiCOM P543 P544 P545 P546 LEDs PL...
Страница 708: ...P54x EN MR La4 Measurements and Recording MiCOM P543 P544 P545 P546 MR...
Страница 710: ...P54x EN MR La4 Measurements and Recording MR 8 2 MiCOM P543 P544 P545 P546 MR...
Страница 726: ...P54x EN FD La4 Firmware Design MiCOM P543 P544 P545 P546 FD...
Страница 748: ...P54x EN CM La4 Commissioning MiCOM P543 P544 P545 P546 CM...
Страница 754: ...P54x EN CM La4 Commissioning CM 10 6 MiCOM P543 P544 P545 P546 CM...
Страница 832: ...P54x EN CM La4 Commissioning CM 10 84 MiCOM P543 P544 P545 P546 CM Commissioning Engineer Customer Witness Date Date...
Страница 874: ...P54x EN MT La4 Maintenance MiCOM P543 P544 P545 P546 MT MT...
Страница 876: ...P54x EN MT La4 Maintenance MT 11 2 MiCOM P543 P544 P545 P546 MT...
Страница 882: ...P54x EN TS La4 Troubleshooting MiCOM P543 P544 P545 P546 TS...
Страница 884: ...P54x EN TS La4 Troubleshooting TS 12 2 MiCOM P543 P544 P545 P546 TS...
Страница 894: ...P54x EN SC La4 SCADA Communications MiCOM P543 P544 P545 P546 SC...
Страница 928: ...P54x EN SG La4 Symbols and Glossary MiCOM P543 P544 P545 P546 SG...
Страница 938: ...P54x EN SG La4 Symbols and Glossary SG 14 10 MiCOM P543 P544 P545 P546 SG...
Страница 940: ...P54x EN IN La4 Installation MiCOM P543 P544 P545 P546 IN...
Страница 947: ...Installation P54x EN IN La4 MiCOM P543 P544 P545 P546 IN 15 7 IN P0147ENd Figure 2 Rack mounting of panel mount relays...
Страница 957: ...Installation P54x EN IN La4 MiCOM P543 P544 P545 P546 IN 15 17 IN 10P54400_1 Figure 10 P544 external connection diagram...
Страница 966: ...P54x EN IN La4 Installation IN 15 26 MiCOM P543 P544 P545 P546 IN Figure 19 P546 external connection diagram...
Страница 973: ...Installation P54x EN IN La4 MiCOM P543 P544 P545 P546 IN 15 33 IN Figure 26 P546 Final assembly drawing...
Страница 974: ...P54x EN IN La4 Installation IN 15 34 MiCOM P543 P544 P545 P546 IN...
Страница 976: ...P54x EN VH La4 Firmware and Service Manual Version History MiCOM P543 P544 P545 P546 VH...
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