Вестник МГТУ, 2023, Т. 26, № 4.

Вестник МГТУ. 2023. Т. 26, № 4. С. 384-394. DOI: https://doi.org/10.21443/1560-9278-2023-26-4-384-394 Apollonsky, S. M., Kuklev, Y. V. 2016. Low-voltage electrical apparatus. Journal o f Mining Institute, 218, pp. 251-260. EDN : VXLDQP. ( In Russ.) Butorin, V. A., Tsarev, I. B., Banin, R. V., Sharpilov, A. Yu. 2019. Time of first check of condition contact magnetic pusher. Vestnik Kurganskoi GSKhA, 2(30), pp. 58-60. EDN : XIVECH. ( In Russ.) Gracheva, E. I., Gorlov, A. N., Alimova, A. N., Mukhanova, P. N. 2021. Resistance change of contact groups of low-voltage electrical apparatus: Determining the laws. Vestnik o f MSTU, 24(4), pp. 350-360. DOI: https://doi.org/10.21443/1560-9278-2021-24-4-350-360. EDN: KPMROA. (In Russ.) Gracheva, E. I., Shakurova, Z. M., Abdullazyanov, R. E. 2019. A comparative analysis of the most common deterministic methods for the calculation of electricity losses in industrial networks. Power Engineering: Research, Equipment, Technology, 21(5), pp. 87-96. DOI: https://doi.org/10.30724/Z1998-9903-2019-21-5- 87-96. EDN : NTJFZF. ( In Russ.) Gracheva, E. I., Alimova, A. N. 2018. Possible errors of calculations of losses of the electric power on shop industrial networks. Power Engineering: Research, Equipment, Technology, 20(11-12), pp. 81-92. DOI: https://doi.org/10.30724/1998-9903-2018-20-11-12-81-92. EDN : YXRTVR. ( In Russ.) Egorov, E. G., Egorov, G. E., Luiya, N. Yu. 2019. Features of measurement of recoverable electrical strength in low-voltage ac contactors. Vestnik Chuvashskogo Universiteta, 3, pp. 78-86. EDN : JSGLUV. ( In Russ.) Egorov, E. G., Ivanova, S. P., Luiya, N. Yu., Afanasiev, A. V. 2018. Investigation of the breaking capacity of the automatic circuit-breakers in the short-circuit mode . Russian Electrical Engineering, 8 , pp. 12-15. EDN : UTZVLZ. (In Russ.) Petrov, A. R., Gracheva, E. I. 2023. Modeling of power losses in contact systems of low-voltage switching devices. Omsk Scientific Bulletin, 2(186), pp. 126-133. DOI: https://doi.org/10.25206/1813-8225-2023-186- 126-133. EDN : SHFUKK. ( In Russ.) Sadykov, R. R. 2017. Evaluation of reliability of low voltage commercial networks of industrial power supply. Power Engineering: Research, Equipment, Technology, 19(5-6), pp. 98-108. EDN : ZIXFIF. ( In Russ.) Shagidullin, A. V. 2017. The effectiveness of the replacement low-voltage switching devices on the example of industrial enterprise. Power Engineering: Research, Equipment, Technology, 19(3-4), pp. 89-95. EDN : ZBTJAF. (In Russ.) Andm§ca, M., Adam, M., Burlica, R., Munteanu, A. et al. 2016. Considerations regarding the influence of contact resistance on the contacts of low voltage electrical equipment. International Conference and Exposition on Electrical and Power Engineering (EPE). Iasi, Romania, pp. 123-128. DOI: https://doi.org/10.1109/ ICEPE.2016.7781317. Calin, M. D., Helerea, E. 2020. Aspects regarding testing of electromagnetic contactors sensitivity to voltage dips. International Symposium on Fundamentals o f Electrical Engineering (ISFEE ) . Bucharest, Romania, pp. 1-6. DOI: https://doi.org/10.1109/ISFEE51261.2020.9756156. Deac, C. N., Adam, M., Andm§ca, M., Dragomir, A. 2019. Aspects regarding contact resistance measurement. 8th International Conference on Modern Power Systems (MPS). Cluj-Napoca, Cluj, Romania, pp. 1-6. DOI: https://doi.org/10.1109/MPS.2019.8759784. Derevyankin, P. G., Frolov, V. Ya., Gorchakov, S. L. 2020. Analysis of erosion processes of electrical contacts manufactured by plasma spraying technology. IEEE Conference o f Russian Young Researchers in Electrical and Electronic Engineering (EIConRus). St. Petersburg and Moscow, Russia, pp. 622-625. DOI: https://doi.org/10.1109/EIConRus49466.2020.9039012. Gheorghi^a, C. M., Adam, M., Andm§ca, M., Munteanu, A. et al. 2017. About contact resistance of the electrical equipment. International Conference on Modern Power Systems (MPS). Cluj-Napoca, Romania, pp. 1-4. DOI: https://doi.org/10.1109/MPS.2017.7974439. Gonzalez, D., Hopfeld, M., Berger, F., Schaaf, P. 2018. Investigation on contact resistance behavior of switching contacts using a newly developed model switch. IEEE Transactions on Components, Packaging and Manufacturing Technology, 8 ( 6 ), pp. 939-949. DOI: https://doi.org/10.1109/TCPMT.2018.2791839. Hadziefendic, N., Kostic, N., Trifunovic, J., Kostic, M. 2019. Detection of poor contacts in low-voltage electrical installations. IEEE Transactions on Components, Packaging and Manufacturing Technology , 9(1), pp. 129-137. DOI: https://doi.org/10.1109/TCPMT.2018.2882626. Kim, K., Joo, H. W., Bae, C. Y., Choi, J. et al. 2019. 3D simulation of air arc in the molded case circuit breaker. 5th International Conference on Electric Power Equipment - Switching Technology (ICEPE-ST). Kitakyushu, Japan, pp. 239-242. DOI: https://doi.org/10.1109/ICEPE-ST.2019.8928799. Lyuminarskaja, E. S., Lyuminarsky, I. E. 2018. Theoretical study of electrical contact dustiness impact on transition resistance. International Conference on Industrial Engineering, Applications and Manufacturing (ICIEAM). Moscow, Russia, pp. 1-3. DOI: https://doi.org/10.1109/ICIEAM.2018.8728710. Ruempler, C., Zacharias, A., Stammberger, H. 2014. Low-voltage circuit breaker arc simulation including contact arm motion. The 27th International Conference on Electrical Contacts (ICEC 2014). Dresden, Germany, pp. 1-5. URL: https://ieeexplore.ieee.org/document/6857183. 393

RkJQdWJsaXNoZXIy MTUzNzYz