Bebić, Milan

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  • Bebić, Milan (2)
Projects

Author's Bibliography

Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test

Brajović, Dragan; Jokanović, Bojan; Bebić, Milan; Kartalović, Nenad; Nikezić, Dušan P.

(2023)

TY  - JOUR
AU  - Brajović, Dragan
AU  - Jokanović, Bojan
AU  - Bebić, Milan
AU  - Kartalović, Nenad
AU  - Nikezić, Dušan P.
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10642
AB  - The study aims to achieve a simple, reliable, and significant lifetime extension of the high-voltage asynchronous machine in relation to the voltage endurance test. To achieve this goal, the focus was on achieving longer-lasting and more stable insulation of the stator package of an asynchronous machine. Longer-lasting and more stable insulation of a stator is achieved by reinforcing the weak points on its prefabricated multiturn coils. These reinforcements were performed with standard insulating materials that are used for the production of the prefabricated multiturn coils (because there is no data regarding the long-term behavior of new materials that show some better properties in laboratories, but only during short-term tests). With such reinforced weak spots based on prefabricated models, they were made by the classical procedure with the use of standardized tools. To track the effects of the improvement of the insulation characteristics of a stator, an algorithm was developed based on the law of increasing probability and the determination of lifetime curves to the voltage endurance test. The lifetime curves were determined by the method of increasing voltage with the transformation of the obtained results to the corresponding results by the constant voltage method. The applied algorithm that was formed for this study, had been verified with statistical reliability of 95%. The combined measurement uncertainty of the measurement procedure was about 5%.
T2  - Electrical Engineering
T1  - Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test
VL  - 105
SP  - 1643
EP  - 1653
DO  - 10.1007/s00202-023-01767-w
ER  - 
@article{
author = "Brajović, Dragan and Jokanović, Bojan and Bebić, Milan and Kartalović, Nenad and Nikezić, Dušan P.",
year = "2023",
abstract = "The study aims to achieve a simple, reliable, and significant lifetime extension of the high-voltage asynchronous machine in relation to the voltage endurance test. To achieve this goal, the focus was on achieving longer-lasting and more stable insulation of the stator package of an asynchronous machine. Longer-lasting and more stable insulation of a stator is achieved by reinforcing the weak points on its prefabricated multiturn coils. These reinforcements were performed with standard insulating materials that are used for the production of the prefabricated multiturn coils (because there is no data regarding the long-term behavior of new materials that show some better properties in laboratories, but only during short-term tests). With such reinforced weak spots based on prefabricated models, they were made by the classical procedure with the use of standardized tools. To track the effects of the improvement of the insulation characteristics of a stator, an algorithm was developed based on the law of increasing probability and the determination of lifetime curves to the voltage endurance test. The lifetime curves were determined by the method of increasing voltage with the transformation of the obtained results to the corresponding results by the constant voltage method. The applied algorithm that was formed for this study, had been verified with statistical reliability of 95%. The combined measurement uncertainty of the measurement procedure was about 5%.",
journal = "Electrical Engineering",
title = "Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test",
volume = "105",
pages = "1643-1653",
doi = "10.1007/s00202-023-01767-w"
}
Brajović, D., Jokanović, B., Bebić, M., Kartalović, N.,& Nikezić, D. P.. (2023). Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test. in Electrical Engineering, 105, 1643-1653.
https://doi.org/10.1007/s00202-023-01767-w
Brajović D, Jokanović B, Bebić M, Kartalović N, Nikezić DP. Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test. in Electrical Engineering. 2023;105:1643-1653.
doi:10.1007/s00202-023-01767-w .
Brajović, Dragan, Jokanović, Bojan, Bebić, Milan, Kartalović, Nenad, Nikezić, Dušan P., "Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test" in Electrical Engineering, 105 (2023):1643-1653,
https://doi.org/10.1007/s00202-023-01767-w . .

Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test

Brajović, Dragan; Jokanović, Bojan; Bebić, Milan; Kartalović, Nenad; Nikezić, Dušan P.

(2023)

TY  - JOUR
AU  - Brajović, Dragan
AU  - Jokanović, Bojan
AU  - Bebić, Milan
AU  - Kartalović, Nenad
AU  - Nikezić, Dušan P.
PY  - 2023
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10648
AB  - The study aims to achieve a simple, reliable, and significant lifetime extension of the high-voltage asynchronous machine in relation to the voltage endurance test. To achieve this goal, the focus was on achieving longer-lasting and more stable insulation of the stator package of an asynchronous machine. Longer-lasting and more stable insulation of a stator is achieved by reinforcing the weak points on its prefabricated multiturn coils. These reinforcements were performed with standard insulating materials that are used for the production of the prefabricated multiturn coils (because there is no data regarding the long-term behavior of new materials that show some better properties in laboratories, but only during short-term tests). With such reinforced weak spots based on prefabricated models, they were made by the classical procedure with the use of standardized tools. To track the effects of the improvement of the insulation characteristics of a stator, an algorithm was developed based on the law of increasing probability and the determination of lifetime curves to the voltage endurance test. The lifetime curves were determined by the method of increasing voltage with the transformation of the obtained results to the corresponding results by the constant voltage method. The applied algorithm that was formed for this study, had been verified with statistical reliability of 95%. The combined measurement uncertainty of the measurement procedure was about 5%.
T2  - Electrical Engineering
T1  - Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test
VL  - 105
SP  - 1643
EP  - 1653
DO  - 10.21203/rs.3.rs-2254547/v1
ER  - 
@article{
author = "Brajović, Dragan and Jokanović, Bojan and Bebić, Milan and Kartalović, Nenad and Nikezić, Dušan P.",
year = "2023",
abstract = "The study aims to achieve a simple, reliable, and significant lifetime extension of the high-voltage asynchronous machine in relation to the voltage endurance test. To achieve this goal, the focus was on achieving longer-lasting and more stable insulation of the stator package of an asynchronous machine. Longer-lasting and more stable insulation of a stator is achieved by reinforcing the weak points on its prefabricated multiturn coils. These reinforcements were performed with standard insulating materials that are used for the production of the prefabricated multiturn coils (because there is no data regarding the long-term behavior of new materials that show some better properties in laboratories, but only during short-term tests). With such reinforced weak spots based on prefabricated models, they were made by the classical procedure with the use of standardized tools. To track the effects of the improvement of the insulation characteristics of a stator, an algorithm was developed based on the law of increasing probability and the determination of lifetime curves to the voltage endurance test. The lifetime curves were determined by the method of increasing voltage with the transformation of the obtained results to the corresponding results by the constant voltage method. The applied algorithm that was formed for this study, had been verified with statistical reliability of 95%. The combined measurement uncertainty of the measurement procedure was about 5%.",
journal = "Electrical Engineering",
title = "Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test",
volume = "105",
pages = "1643-1653",
doi = "10.21203/rs.3.rs-2254547/v1"
}
Brajović, D., Jokanović, B., Bebić, M., Kartalović, N.,& Nikezić, D. P.. (2023). Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test. in Electrical Engineering, 105, 1643-1653.
https://doi.org/10.21203/rs.3.rs-2254547/v1
Brajović D, Jokanović B, Bebić M, Kartalović N, Nikezić DP. Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test. in Electrical Engineering. 2023;105:1643-1653.
doi:10.21203/rs.3.rs-2254547/v1 .
Brajović, Dragan, Jokanović, Bojan, Bebić, Milan, Kartalović, Nenad, Nikezić, Dušan P., "Lifetime extension of the high voltage asynchronous machine in relation to the voltage endurance test" in Electrical Engineering, 105 (2023):1643-1653,
https://doi.org/10.21203/rs.3.rs-2254547/v1 . .