Application Notes
P54x/EN AP/La4
MiCOM P543, P544, P545 & P546
(AP) 6-7
AP
1.
INTRODUCTION
1.1
Protection of overhead line, cable, and hybrid circuits
Overhead lines, typically ranging from 10 kV distribution lines to 800 kV transmission lines,
are probably the most fault susceptible items of plant in a modern power system. It is
therefore essential that the protection associated with them provides secure and reliable
operation.
For distribution systems, continuity of supply is of paramount importance. The majority of
faults on overhead lines are transient or semi-permanent in nature. Multi-shot auto-reclose
cycles are therefore commonly used in conjunction with instantaneous tripping elements to
increase system availability. For permanent faults it is essential that only the faulted section
of plant is isolated. As such, high speed, discriminative fault clearance is often a
fundamental requirement of any protection scheme on a distribution network.
The requirements for a transmission network must also take into account system stability.
Where systems are not highly interconnected the use of single phase tripping and high
speed auto-reclosure is often required. This in turn dictates the need for very high speed
protection to reduce overall fault clearance times.
Many line configurations exist which need to be addressed. Transmission applications may
typically consist of 2 or 3 terminal applications, possibly fed from breaker and a half or mesh
arrangements. Lower voltage applications may again be 2 or 3 terminal configurations with
the added complications of in zone transformers or small teed load transformers.
Charging current may also adversely affect protection. This is a problem particularly with
cables and long transmission lines. Both the initial inrush and steady state charging current
must not cause relay maloperation and preferably should not compromise protection
performance.
Physical distance must be taken into account. Some EHV transmission lines can be up to
several hundred kilometers in length. If high speed, discriminative protection is to be
applied, it will be necessary to transfer information between line ends. This not only puts the
onus on the security of signaling equipment but also on the protection in the event of loss of
this signal.
Back-up protection is also an important feature of any protection scheme. In the event of
equipment failure, such as signaling equipment or switchgear, for example, it is necessary to
provide alternative forms of fault clearance. It is desirable to provide back-up protection
which can operate with minimum time delay and yet discriminate with both the main
protection and protection elsewhere on the system.
Transmission systems are essential to route power from the point of generation to the region
of demand. The means of transport is generally via overhead lines, which must have
maximum in-service availability. The exposed nature of overhead lines make them fault-
prone, and protection devices must trip to initiate isolation of any faulted circuit. In addition
to fast fault clearance to prevent plant damage, the requirements for a transmission network
must also take into account system stability. Where systems are not highly interconnected
the use of single phase tripping and high speed auto-reclosure is often required. This in turn
dictates the need for very high speed protection to reduce overall fault clearance times.
The MiCOM P54x provides fast, highly selective protection, to trip for genuine line faults.
The current differential principle easily detects intercircuit, evolving and cross country faults
amongst others as the relay works on a per phase basis. It is also immune to voltage
measurement problems such as CVT transients and power swings on the system and the
most important benefit of all; differential principle offers the most selective line protection.
A combination with a full scheme distance protection and aided directional earth fault (DEF)
makes the relay a complete and versatile solution for line protection. Differential and
distance protection can be set to operate to work separately or simultaneously. Distance can
also be set to work upon failure of the relay protection communications. These options allow
the user to set different protection schemes such as Differential as main 1 and Distance as
main 2 or vice versa, Differential as main 1 and Distance as backup, etc.
Содержание MiCOM P54 Series
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Страница 16: ...P54x EN IT La4 Introduction MiCOM P543 P544 P545 P546 IT...
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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...
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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...
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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...
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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...
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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...
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Страница 882: ...P54x EN TS La4 Troubleshooting MiCOM P543 P544 P545 P546 TS...
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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...
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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...
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