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2024–present |
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Senior Research Fellow – Principal Investigator |
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Project management, leadership of the technical part of the project, preparation of publications, and conducting research |
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Kazakh Automobile and Highway Institute KazADI, Almaty, Kazakhstan |
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Research |
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2020 – present |
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Senior Lecturer at the Department of Electronics and Robotics |
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Teaching and Research |
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Almaty University of Power Engineering and Telecommunications, Almaty, Kazakhstan |
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Teaching and Research |
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2019 – 2020 |
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Lecturer at the Department of Electronics and Robotics |
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Teaching and Research |
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Almaty University of Energy and Communications, Almaty, Kazakhstan |
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Teaching and Research |
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2017 – 2019 |
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engineer |
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Educational and support work for the department |
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Almaty University of Power Engineering and Telecommunications, Almaty, Kazakhstan |
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Engineering, Research |
2013 - 2017 Almaty university of power engineering and telecommunication. Bachelor of technique and technology 5B071600 Instrument making.
2017 - 2019 Almaty university of power engineering and telecommunication. Bachelor of technique and technology 6М071600 Instrument making.
2019 - 2022 Kazakh National Research Technical University. Doctor of philosophy PhD 8D07106 Robotics and mechatronics.
Participation in projects
1. GF. scientific project AP19679162 “Development of a control and monitoring system for a multi-bladed vertical-axis wind generator” senior researcher - responsible executive. 2023 – present time
2.student scientific project within the framework of the Sustainability Living Lab program from Nazarbayev University with the support of Shevron, Project Manager, 2023 -2024.
3.Republican student competition Student Energy Challenge 2022 Project manager
4.student scientific project within the framework of the Sustainability Living Lab program from Nazarbayev University with the support of Shevron, Project Manager, 2020 -2021.
2. Фазылова А.Р., Балбаев Г.К. Ветрогенераторы с вертикальной осью вращения. Разработка и исследование – Searburucken.: Lap Lambert Academic Publishing, 2017
3. A. Kopesbayeva, A.Fazylova, M.Belov. Development of mobile robot with possibility of vertical displacement – Almaty, Kazakhstan.: Almaty University of Power Engineering and Telecommunications, 2017, №3 – p.12-17.
4. Савин К.С., Фазылова А.Р. Система управления охранной сигнализации по каналам GSM – Searburucken.: Lap Lambert Academic Publishing, 2018
5. Фазылова А.Р. Анализ применения ветрогенераторов в г.Алматы – Алматы.: Казахская академия транспорта и коммуникаций им.М.Тынышпаева, 2018. – 2 т., 47-50 стр.
6. Шаракпаева Г.Д., Фазылова А.Р. Роль информационных технологий в борьбе с международным терроризмом – Алматы.: Алматинский университет энергетики и связи, 2018. – с.265 – 267.
7. Фазылова А.Р. Толкачев А.А. Расчет основных параметров силовых элементов частотного преобразователя, 2018. (https://interactive-plus.ru/ru/article/471936/discussion_platform?utm_source=ticket&utm_medium=email&utm_campaign=request_onsite&utm_term=ru&utm_content=discussion_platform
8. М.D. Adambaev, А.R. Fazylova. Analysis of the application of wind-generators in Almaty– Алматы.: Алматинский университет энергетики и связи, 2018, №4. – с.81 – 87.
9. Б.С. Байкенов, К.С. Савин, А.Р. Фазылова. Экспериментальное исследование характеристик движения экзоскелета – Алматы.: Алматинский университет энергетики и связи, 2018, №4. – с.92 – 97
10. Б.С. Байкенов, Р.С. Тынчеров, Фазылова А.Р. Сравнительный анализ методов распознавания объектов – Алматы.: Казахская академия транспорта и коммуникаций им.М.Тынышпаева, 2019. – №1, 186-191 стр.
11. Р.С.Тынчеров, А.Р. Фазылова Б.С. Байкенов. Сравнительный анализ методов классификации объектов на изображении – Алматы.: Алматинский университет энергетики и связи, 2018, сборник научных трудов – энергетика, радиотехника и связь (приборостроение) – с.4 – 8
12. К.С. Савин, А.Р. Фазылова, Б.С. Байкенов. Разработка компьютерной модели экзоскелета – Алматы.: Алматинский университет энергетики и связи, 2018, сборник научных трудов – энергетика, радиотехника и связь (приборостроение) – с.9 – 14
13. А.А. Толкачев, А.Р. Фазылова, Б.С. Байкенов. Моделирование системы управления электроприводом с помощью частотного преобразователя – Алматы.: Алматинский университет энергетики и связи, 2018, сборник научных трудов – энергетика, радиотехника и связь (приборостроение) – с.26 – 30
14. А.Р. Фазылова, М.Д.Адамбаев. Разработка системы ветрогенерации в комбинированной системе электроснабжения – Алматы.: Алматинский университет энергетики и связи, 2018, сборник научных трудов – энергетика, радиотехника и связь (приборостроение) – с.31 – 34
15. A.R. Fazylova, G.K. Balbayev. Comparative analysis of methods for classification of objects in the image- Алматы: РГП «НЦТП», 2019. Материалы круглого стола «Применение искусственного интеллекта в индустриально-инновационном развитии Республики Казахстан». – с.51- 58.
17 Alina Fazylova , Assessment of the prospect for the use of renewable energy sources in the world and Kazakhstan, The Bulletin of Kazakh Academy of Transport and Communications named after M. Tynyshpayev, ISSN 1609-1817, DOI 10.52167/1609-1817, Vol. 118, No.3 (2021) pp.124-134
18 Alina Fazylova ,Calculation of the parameters of the wind turbine rotor eddy current sensor, The Bulletin of Kazakh Academy of Transport and Communications named after M. Tynyshpayev, ISSN 1609-1817, DOI 10.52167/1609-1817, Vol. 118, No.3 (2021) pp.134-141
19 Alina Fazylova, Calculation of the parameters of the wind turbine rotor temperature sensor, The Bulletin of Kazakh Academy of Transport and Communications named after M. Tynyshpayev, ISSN 1609-1817, DOI 10.52167/1609-1817, Vol. 118, No.3 (2021) pp.141 – 149
20. Zhetenbayev , N., Ayapbergen, N., Kazanina, I., & Fazylova, A. (2021). МОДЕЛИРОВАНИЕ КЛИМАТИЧЕСКОЙ СИТУАЦИИ И ПОВЫШЕНИЕ ЭФФЕКТИВНОСТИ ВЕТРОГЕНЕРАТОРА. Вестник КазАТК, 119(4), 74–82. https://doi.org/10.52167/1609-1817-2021-119-4-74-82
21. Fazylova, A.R., Balbayev, G., Tultayev, B. System of short-term forecasting of wind turbine output power consumption, News of the academy of sciences of the republic of Kazakhstan- Series of geology and technical sciences. Volume 2022, Issue 3, pages 243-252
22. Fazylova, A., Iliev, T., Balbayev, G. Development of a Monitoring System for the State of the Main Components of the Wind Turbine, Journal of Electrical and Electronics Engineeringthis link is disabled, 2022, 15(1), pp. 27–32, Scopus процентиль- 21%, Q4
23. Fazylova, A., Iliev, T.A New Type of Wind Generator Blades Mechanical Automatic Control System 2022 International Conference on Communications, Information, Electronic and Energy Systems, CIEES 2022 - Proceedings, 2022
24. Fazylova Alina, Michail Malamatoudis, Panagiotis Kogias, Optimization of the blade profile of a vertical axis wind turbine based on aerodynamic analysis, E3S Web of Conferences 404, 02002 (2023), http://doi.org/10.1051/e3sconf/202340402002
25. Mihaylov, G., Fazylova, A. An Approach for Providing Mobile Connectivity in Hard to Access Rugged Terrain CIEES 2023 - IEEE International Conference on Communications, Information, Electronic and Energy Systems, 2023
26. Iliev, T., Stoyanov, I., Mihaylov, G., Fazylova, A., Papadopoulou, M.S. Evaluation of Signal Level Distribution in 5G Radio Relay Transmissions † Engineering Proceedings., 2023, 41(1), 2
27. Fazylova, A.; Tultayev, B.; Iliev, T.; Stoyanov, I.; Beloev, I. Development of a Control Unit for the Angle of Attack of a Vertically Axial Wind Turbine. Energies 2023, 16, 5202. https://doi.org/10.3390/en1613520225/, Scopus процентиль- 82%, Q1
28. Stoyanov, I.; Iliev, T., Fazylova A.,Yestemessova G. A Dinamic Control model of the blades position for the vertical-axis wind generator by a program method. Inventions 2023,8,120, https://doi.org/10.3390/inventions8050120/
29. Teodor Iliev, Alina Fazylova, and Bozhana Stoycheva. Comparative assessment of anticipated wind power capacities in Bulgaria and Kazakhstan. E3S Web of Conferences 551, 02008 (2024) https://doi.org/10.1051/e3sconf/202455102008
30. A. Fazylova, G. Mihaylov, T. Iliev, I. Stoyanov, S. Kosunalp and G. Sergazin, "A Computational Approach for Predicting the Short-Term Output Power of a Wind Turbine in an Urban Area," 2024 9th International Conference on Energy Efficiency and Agricultural Engineering (EE&AE), Ruse, Bulgaria, 2024, pp. 1-5, doi: 10.1109/EEAE60309.2024.10600545.
31. Тультаев, Б., Кобдикова, Ш., Кабашева, М., Адильханов, Е., & Фазылова A. (2023). МОДЕЛИРОВАНИЕ РАЗЛИЧНЫХ ТИПОВ ВЕТРОГЕНЕРАТОРА В КРИТИЧЕСКОМ РЕЖИМЕ. Вестник КазАТК, 129(6), 423–431. https://doi.org/10.52167/1609-1817-2023-129-6-423-431
32. Fazylova, A. Tultayev, B., Iliev, T., Stoyanov, I., Kabasheva, M., Kosunalp, S. Experimental Study of an Industrial Data Transmission Network in the Automatic Control System of a Wind Turbine. Machines 2024, 12, 746. https://doi.org/10.3390/machines12110746 ,процинтиль 82, Q1
33. Fazylova, A.; Iliev, T.; Stoyanov, I.; Siemens, E. Height Control System for Wind Turbines Based on Critical Wind Speed Calculation. Appl. Sci. 2024, 14, 9802. https://doi.org/10.3390/app14219802, процинтиль 79, Q1
34. Fazylova, A., K. Alipbayev, T. Iliev, A. Aden "Advanced Control Strategies for Wind Turbine Blade Pitch Optimization" 5th IEEE International Conference on Communications, Information, Electronic and Energy Systems, CIEES 2024, (2024): -. doi: 10.1109/CIEES62939.2024.10811305
35. Fazylova, A.; Alipbayev, K.; Iliev, T.; Kaliyeva, N. Adaptive Control of the Aerodynamic Flaps of the Savonius Rotor Under Variable Wind Loads. Appl. Sci. 2025, 15, 6096. https://doi.org/10.3390/app15116096, процинтиль 79, Q1
36. Fazylova, A.; Alipbayev, K.; Myrzabekov, K.; Aden, A.; Iliev, T. The Aerodynamically Driven Orientation Control of a Solar Panel on an Aircraft with Numerical Simulation. Drones 2025, 9, 458. https://doi.org/10.3390/drones9070458 процинтиль 86, Q1
37. Fazylova, A.; Napadailo, Y.; Rybina, G.V.; Tultayev, B.; Iliev, T.; Stoyanov, I. Modeling the Thermal State of a Wind Turbine Generator Considering External Factors. Eng. Proc. 2025, 104, 88. https://doi.org/10.3390/engproc2025104088
38. Fazylova, A.; Alipbayev, K.; Iliev, T.; Aden, A. Automated Control of Dynamic Loads in Drive Systems. Eng. Proc. 2025, 104, 76. https://doi.org/10.3390/engproc2025104076
39. Fazylova, A.; Alipbayev, K.; Aden, A.; Oraz, F.; Iliev, T.; Stoyanov, I. A Comparative Review of Vertical Axis Wind Turbine Designs: Savonius Rotor vs. Darrieus Rotor. Inventions 2025, 10, 95. https://doi.org/10.3390/inventions10060095