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ASINXRON MOTORLAR NAZORATI UCHUN UCH FAZALI TOK O‘ZGARTKICHLAR MODELI VA EKSPERIMENTAL TAHLILI

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MAQOLA ANNOTATSIYASI

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Ushbu maqolada asinxron motorlarda ishlatiladigan uch fazali elektromagnit tok o‘zgartkichlarining sezgir elementlari asosida model va eksperimental tekshiruvi bayon etilgan. Tadqiqotning asosiy maqsadi motorlarning tirsak qismidagi magnit maydon tarqalishini baholash va chiqish signali xususiyatlarini aniqlash orqali reaktiv quvvat nazorati samaradorligini oshirishdir. Bunda ketma-ket, parallel va differensial ulanishli elektromagnit tok o‘zgartkichlarning chiqish kuchlanishlariga ta’siri o‘rganilib, ularning har biri uchun statik va dinamik tavsiflar aniqlangan. Modellar Matlab dasturiy muhiti asosida tuzilgan, eksperimental tekshiruv esa CassyLAB qurilmasi orqali amalga oshirilgan. Chiqish kuchlanishining sinusoidalligi, turg‘unlik holatiga erishish vaqti, garmonik buzilishlarning darajasi tahlil qilingan. Tadqiqot natijalari asosida differensial ulangan sezgir elementli tok o‘zgartkichlar eng samarali natija bergani aniqlangan. Mazkur yondashuv asinxron motorlarda energiya sifatini nazorat qilish tizimlarini yaratishda amaliy ahamiyatga ega.

MUALIFLAR

Teglar

# моделирование# реактивная мощность# modeling# modellashtirish# reactive power# asynchronous motor# MATLAB# asinxron motor# reaktiv quvvat# чувствительный элемент# elektromagnit tok o‘zgartkich# sezgir element# CassyLAB# garmonikalar.# электромагнитный токопрeобразова# асинхронный двигатель# гармоники# electromagnetic current converte# sensitive element# harmonics.

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Maqola idintifikatorlari

Foydalanilgan adabiyotlar

Ahmad, M. (2010). High performance AC drives: Modeling, analysis and control. Springer.

Bose, B. K. (2006). Power electronics and motor drives. Elsevier.

Chiasson, J. (2005). Modeling and high-performance control of electrical machines. Wiley- Interscience.

De Doncker, R. W., Pulle, D. W. J., & Veltman, A. (2011). Advanced electrical drives: Analysis, modeling, control. Springer.

Ahmatov, M. G., Pirmatov, N. B., & Amanulla, A. H. (2000). Eksperimentalʹnoe issledovanie magnitnogo polya v vozdushnom zazore sinkhronnoi mashiny dvukh osnogo vozbuzhdeniya [Experimental study of the magnetic �ield in the air gap of a synchronous machine with two-axis excitation]. Vestnik TashGTU [Vestnik of Tashkent State Technical University], (1), 94–95.

Ahmatov, M. G., & Odilov, G. O. (1971). Eksperimentalʹnoe opredelenie garmonicheskogo sostava polya v zazore i semeistv krivykh namagnichivaniya po pervoi garmonicheskoi potoka sinkhronnoi mashiny pri nepodvizhnom rotore [Experimental determination of the harmonic composition of the �ield in the gap and families of magnetization curves by the �irst harmonic of the flux of a synchronous machine with a stationary rotor]. Izvestiya AN UzSSR. Seriya STN, (4), 21–24.

Yan, Y., Zhao, J., Xia, C., & Shi, T. (2015). Direct torque control of matrix converter-fed permanent magnet synchronous motor drives based on master and slave vectors. IET Power Electronics, 8(2), 288–296.

Wu, Q., Zhang, Z., Guo, D., Zhao, Y., & Huang, L. (2022). Research on asynchronous motor control method based on NPC three-level inverter. In Proceedings of the 2022 Chinese Intelligent Systems Conference (CISC 2022) (pp. 522–530). Springer. https://doi.org/10.1007/978-981-19-2114- 3_49

Inkov, Y. M., Kosmodamianskiy, A. S., Pugachev, A. A., & Fadeykin, T. N. (2022). Comparative assessment of electric drives with a vector-control system for asynchronous motors. Russian Electrical Engineering, 93, 570–575. https://doi.org/10.3103/S1068371222090079

Nomonov, A. B. (2024). Dynamic model of a three-phase asynchronous motor using MATLAB/ SIMULINK. Web of Discoveries: Journal of Analysis and Inventions, 2(8), 13–20.

Rasyadan, A., & Yaacob, S. (2018). Modeling of three-phase induction motor performance under faulty inverter condition using MATLAB GUI and Simulink. International Journal of Engineering and Technology, 7(3.25), 344–349.

Usama, M., & Kim, J. (2020). Vector control algorithm based on different current control switching techniques for AC motor drives. arXiv preprint. arXiv:2002.12345

Nizamov, J. A. (2023). Device for measuring the resulting magnetic field of the stator winding of asynchronous motor for general industrial application. In III International Scienti�ic and Technical Conference “Actual Issues of Power Supply Systems” (ICAIPSS 2023). https://doi. org/10.1063/5.0218809

Pirmatov, N. B., Nizamov, J. A., & Ergashev, Sh. O. (2023). Magnetic field in the air gap of an induction motor: General inspection information applications. The American Journal of Engineering and Technology, 5(11), 139–143.

Boikhanov, Z. U. (2022). Effect of changes in the active resistance of stator windings of an asynchronous electric motor on the output signal of a three-phase current converter. Chemical Technology. Control and Management, 1(103), 48–52.

Siddikov, I. Kh., Malikov, A., Makhsudov, M. T., Boikhanov, Z. U., & Uzaqov, R. (2022). Study of the static characteristics of the secondary stator voltage converter of the currents of an induction motor. AIP Conference Proceedings, 2432, 020003. https://doi.org/10.1063/5.0089681

Boikhanov, Z. U. (2022). Boshqariluvchan chiqish kuchlanishli tok o‘zgartkichlarining dinamik tavsiflari [Dynamic characteristics of controlled output voltage current converters]. Ilm-Fan va Innovatsion Rivojlanish [Science and Innovative Development], 2. https://doi.org/10.36522/21819

Boikhanov, Z. U. (2021). GES asinxron dvigatellarining nosimmetrik rejimlari [Asymmetric modes of HPP asynchronous motors]. O‘zbekgidroenergetika [Uzbek Hydropower], 2, 27–28.

Siddikov, I. Kh., Makhsudov, M. T., & Boikhanov, Z. U. (2021). Skhema zameshcheniya i analiz raboty asinkhronnogo dvigatelya pri potreblenii reaktivnoi moshchnosti [Equivalent circuit and analysis of asynchronous motor operation under reactive power consumption]. Glavnyi Energetik [Chief Power Engineer], 7, 29–30.

Boikhanov, Z. U. (2021). Elektr ta’minoti tizimida reaktiv quvvat manbalarini parametrlari [Parameters of reactive power sources in the power supply system]. Scientific and Technical Journal Machine Building, 3(4), 49–53.

Pirmatov, N. B., Nizamov, J. A., & Ergashev, Sh. O. (2023). Experiments with asynchronous motors’ external magnetic fields. International Bulletin of Applied Science and Technology, 3(11), 205–210.

Nizamov, J. A. (2023). Phase angle measurement device between the resultable electric drive force and the electric drive force of the main harmonic magnetic �ield in the air gap of the industrial engine. In III International Scienti�ic and Technical Conference “Actual Issues of Power Supply Systems” (ICAIPSS 2023). https://doi.org/10.1063/5.0218808

Nizamov, J. A. (2023). Some aspects of comparing the operational properties of synchronous machines with a conventional and two mutually shifted excitation windings. Unpublished manuscript.

Nizamov, J. A. (2023). Asinxron motorlarda o‘tkazilgan tajribalar [Experiments on asynchronous motors]. In Elektrotexnika, elektromexanika, elektrotexnologiyalar va elektrotexnika materiallari: Respublika ilmiy-texnik anjumani to‘plami (pp. 681–686). Andijon davlat muhandislik instituti [Andijan State Engineering Institute].

Nizamov, J. A. (2024). Obtaining a mathematical expression of motor damage diagnosis by monitoring the parameters of the external magnetic �ield of asynchronous motors. Academic International Conference on Multi-Disciplinary Studies and Education, 2(1), 24–26.

Nizamov, J. A. (2024). Mathematical expression of the relationship of voltage to angular velocity using the classical theory through the complete internal magnetic flux of an induction machine. Innovative Research in Modern Education, 2(1), 33–35.

Ocak, H., & Loparo, K. A. (2001). A new bearing fault detection and diagnosis scheme based on hidden Markov modeling of vibration signals. In Proceedings of IEEE Acoustics, Speech, and Signal Processing Conference (Vol. 2, pp. 3141–3144). IEEE.

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