DocumentCode
2584840
Title
Thermal and hot spot evaluations on oil immersed power Transformers by FEMLAB and MATLAB software´s
Author
Takami, Kourosh Mousavi ; Gholnejad, Hasan ; Mahmoudi, Jafar
Author_Institution
IST Dep., Malardalen Univ., Vasteras
fYear
2007
fDate
16-18 April 2007
Firstpage
1
Lastpage
6
Abstract
Transformers are important and expensive elements of a power system. Inordinate localized temperature rise, hottest spot temperature (HST), causes rapid thermal degradation of insulation and subsequent thermal breakdown. To prescribe the limits of short-term and long-term loading capability of a transformer, it is necessary to estimate the HST of transformer winding to as high a degree of accuracy as can possibly be made. These papers have now improved the accuracy of estimation of hottest spot temperature. Inordinate temperature rise in a power transformer due to load current is known to be the most important factor in causing rapid degradation of its insulation and decides the optimum load catering ability or the load ability of a transformer. The top oil temperature (TOT) and hottest spot temperature (HST) being natural outcome of this process, an accurate estimation of these parameters is of particular importance. IEEE / IEC among others have proposed procedure to estimate the temperatures, however, the accuracy of the predictions are not always as good as are desired. Unacceptable temperature rise may occur due to several fault conditions other than overloading, and hence warrant an online monitoring of the transformer.
Keywords
computerised monitoring; electrical engineering computing; fault diagnosis; insulation testing; mathematics computing; power transformer insulation; power transformer testing; transformer oil; transformer windings; FEMLAB software; MATLAB software; fault condition; hot spot evaluation; hottest-spot-temperature; long-term loading capability; oil immersed power transformers; online monitoring; rapid thermal degradation; short-term loading capability; thermal breakdown; thermal spot evaluation; top-oil-temperature; transformer winding; Electric breakdown; MATLAB; Parameter estimation; Petroleum; Power systems; Power transformer insulation; Power transformers; Temperature; Thermal degradation; Windings;
fLanguage
English
Publisher
ieee
Conference_Titel
Thermal, Mechanical and Multi-Physics Simulation Experiments in Microelectronics and Micro-Systems, 2007. EuroSime 2007. International Conference on
Conference_Location
London
Print_ISBN
1-4244-1105-X
Electronic_ISBN
1-4244-1106-8
Type
conf
DOI
10.1109/ESIME.2007.359924
Filename
4201121
Link To Document