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2014, International Journal of Engineering Research and Technology (IJERT)
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4 pages
1 file
https://www.ijert.org/insulation-coordination-for-uhv-gas-insulated-substation https://www.ijert.org/research/insulation-coordination-for-uhv-gas-insulated-substation-IJERTV3IS042003.pdf Gas insulated substations provide a best solution to the problem of reduced land availability in the metropolitan areas and have been functioning for more than 30 years around the world. These substations have to maintain high reliability in operation and thus risk of failures due to overvoltages must be kept to minimum. It is observed that GIS technology has also made inroad to the UHV segment. However this inroad has given rise to several challenges which majorly include the GIS Insulation design. The insulation coordination study thus forms a very important aspect in substation design stage. When it comes to the insulation coordination for UHV GIS, it differs in majority from EHV levels as VFTO phenomena is observed to higher extent in UHV levels. This paper discusses the modeling of UHV GIS and presents a novel algorithm for the analysis of Insulation coordination based upon the obtained results from simulation studies. The results obtained have been validated based upon comparison with IEC 62271-203 prescribed voltage levels.
2014
Gas insulated substations provide a best solution to the problem of reduced land availability in the metropolitan areas and have been functioning for more than 30 years around the world. These substations have to maintain high reliability in operation and thus risk of failures due to overvoltages must be kept to minimum. It is observed that GIS technology has also made inroad to the UHV segment. However this inroad has given rise to several challenges which majorly include the GIS Insulation design. The insulation coordination study thus forms a very important aspect in substation design stage. When it comes to the insulation coordination for UHV GIS, it differs in majority from EHV levels as VFTO phenomena is observed to higher extent in UHV levels. This paper discusses the modeling of UHV GIS and presents a novel algorithm for the analysis of Insulation coordination based upon the obtained results from simulation studies. The results obtained have been validated based upon compari...
where Z = surge impedance in Q2 This paper presents the development of BIL (Basic Lightning Impulse Insulation Level) ratings for SF6 gas insulated substations from 72.5 kV to 765 kV. The unique properties of the gas insulated substation are analyzed and insulation coordination design techniques are utilized to determine BIL ratings for the substation equipment, other than the transformer, with a lightning arrester located at the entrance terminals. The resulting analysis shows that, in general, the required BIL level of apparatus for gas insulated systems can be lower than for conventional equipment because of lower surge impedance and shorter lengths of the gas insulated bus.
Przeglad Elektrotechniczny
Ultra High Voltage (UHV) Gas-Insulated Disconnector Switch is a switching device whose operation is associated with generation of Very Fast Transient Overvoltages (VFTO). As VFTO propagate throughout the substation, they might affect both power equipment, such as bushings and transformers, and also become a dimensioning factor for the UHV GIS elements. In UHV GIS substations a special attention towards VFTO is needed due to the lowered insulation coordination margin for such high voltage levels. In the paper the calculation method is presented which contributes to the accuracy of the VFTO calculation for the insulation coordination analyses. VFTO insulation coordination study for exemplary UHV GIS substation is presented. The method presented can lead to more optimized design of the substation elements resulting in more reliable and cost effective solutions. Streszczenie. Odłączniki instalowane w gazowych stacjach najwyższych napięć są złożonymi urządzeniami, których działaniu towarzyszy generowanie przepiąć o najwyższych spotykanych w systemie elektroenergetycznym częstotliwościach. Propagacja tych przepięć powoduje zagrożenie dla urządzeń, jak również stanowi istotne kryterium decydujące o konstrukcji elementów izolacyjnych rozdzielnicy. W artykule przedstawiono metodę pozwalającą na uwzględnienie w analizie koordynacji izolacji rzeczywistych wartości przepięć właściwych dla konstrukcji odłącznika. Wyniki analizy zastosowano do obliczeń przepięć w przykładowym modeli gazowej stacji rozdzielczej najwyższych napięć. (Wpływ konstrukcji odłącznika na obliczenia koordynacji izolacji w gazowych rozdzielnicach najwyższych napięć)
Gas Insulated Switchgear (GIS) when coupled with short cables complicates insulation co-ordination practice particularly regarding fast front transients. The impact of an over-voltage in GIS can be worse than air insulated switchgear (AIS), since a flashover in solid insulation or GIS can result in permanent faults which require long term outages before repairs can be made. Although, a number of insulation coordination studies have discussed controlling over-voltages due to lightning and switching in Gas Insulated Switchgear (GIS) and transformers, not many deal with the additional complexity raised when cables are used to connect overhead lines to the new equipment. The paper reports on aspects of work being done within the CIGRE Working Group on Insulation Coordination. (C4.301). An introduction is provided to the sensitivities which affect the magnitude of fast front transients occurring in a typical arrangement including overhead-lines connected to GIS and transformers using sho...
This paper presents a comparative analysis of gas insulated substation and air insulated substation. A brief study of both the substations is carried out. As the electricity demand is increasing day by day, the power companies are giving their active participation in fulfilling the consumer demand. The design of power substation is classified as air insulated substation and gas insulated substation where the air and gas has a key role in providing insulation. An AIS unit is basically a conventional switchgear technology where air is used as a primary dielectric for insulation. Key property of AIS unit is step-up systems in connection with power stations and transformer substations in the extra high voltage transmission system. Whereas the gas insulated substation works on the principle operation of completely enclosure of all the energized parts in metallic encapsulation compressed within sulphur hexafluoride gas. Both the substations have equal merits and demerits in different aspects. Taking into account a comparative analysis is made regarding design aspects, power losses, cost and reliability.
2012 Asia-Pacific Power and Energy Engineering Conference, APPEEC 2012, 2012
Over voltages are phenomena which occur in power system networks, either externally or internally. The selection of certain level of over voltages which are based on equipment strength for operation is known as insulation coordination. A study has been carried out to investigate over voltages due to lightning, which is affecting an air insulated substation (AIS). The objective of this study is to determine whether the withstand capability or the Basic Insulation Level (BIL) is the cause of fault occurring in a substation
Insulation Coordination is a designing criteria for any electrical equipment which enables the design of an insulation for the equipment in such a way that it minimizes interruptions during steady state conditions and also minimizes damages in case of transient over voltages and this is done economically. Insulation coordination of Ultra high voltage (UHV) system plays a vital role as the voltages in UHV are in the order of 1200 kV hence during faults when the voltage rises up to 7 p.u. the equipment under consideration can undergo heavy damages. To prevent these effects from happening and to understand the intensity of these effects these faults are simulated in ATP EMTP and its effects are observed and presented here. According the data obtained protection device are used to mitigate the overvoltages to acceptable Basic Lightning Impulse Insulation Level (BIL) and Basic Switching Impulse Insulation Level (BSL) ratings of the given transmission system.
IEEE Transactions on Dielectrics and Electrical Insulation, 2000
To guarantee the insulation strength of gas insulated substations (GIS), a number of different voltage waveforms, e.g., switching, lightning and ac have to be applied to the GIS after installation. Because of very huge dimensions of GIS for nominal high voltages, it is not possible to carry out these tests in the factory and parts of the whole system have to be delivered and put together to build the complete GIS. As the result, all insulation tests have to be performed on site. Even if different parts of the system are tested in the factory, because some of the problems occur during the transportation and installation, the insulation strength of the whole GIS can be degraded. In this paper, a novel test setup and the measurement results of a 400 kV GIS have been installed for the Mobarakeh steel industries, Isfahan, Iran, are presented. This system has a length of about 100 m, which corresponds to a total capacitance of about 10 nF per phase. Because of this relatively large capacitance, the power ratings of the test voltage sources have to be very high. For achieving such a high power, a two step cascade voltage transformer (each 800 V/300 kV with a maximum output current of 2 A) fed through an autotransformer enhanced with a number of inductors to compensate the capacitive current and to minimize the input current of the test transformers have been used to apply the necessary 515 kV to perform the ac tests of the whole GIS. The measurements carried out on the system showed that the first two phases passed the test successfully; however the third phase could not withstand the applied voltage because of the pollution near one of the spacers. After replacing the faulty spacer, the insulation strength of the third phase has been recovered.
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