dc.contributor.author | Добривечор, В. В. | uk |
dc.contributor.author | Булашенко, А. В. | uk |
dc.date.accessioned | 2025-03-18T14:39:59Z | |
dc.date.available | 2025-03-18T14:39:59Z | |
dc.date.issued | 2021 | |
dc.identifier.citation | Добривечор В. В. Аналіз діафрагмових поляризаторів [Електронний ресурс] / В. В. Добривечор, А. В. Булашенко // Тези доповідей Всеукраїнської науково-практичної Інтернет-конференції студентів, аспірантів та молодих науковців «Молодь в науці: дослідження, проблеми, перспективи» (МН-2021), м. Вінниця, 01-14 травня 2021 р. – Електрон. текст. дані. – 2021. – Режим доступу: https://conferences.vntu.edu.ua/index.php/mn/mn2021/paper/view/13213. | uk |
dc.identifier.uri | https://ir.lib.vntu.edu.ua//handle/123456789/45476 | |
dc.description.abstract | У дослідженні поданий аналіз конструкцій та характеристик поляризаційних пристроїв на основі прямокутного хвилеводу з діафрагмами. | uk |
dc.description.abstract | The study presents an analysis of the design and characteristics of polarizing devices based on a rectangular waveguide with diaphragms. | en |
dc.language.iso | uk_UA | uk_UA |
dc.publisher | ВНТУ | uk |
dc.relation.ispartof | Тези доповідей Всеукраїнської науково-практичної Інтернет-конференції студентів, аспірантів та молодих науковців «Молодь в науці: дослідження, проблеми, перспективи» (МН-2021), м. Вінниця, 01-14 травня 2021 р. | uk |
dc.relation.uri | https://conferences.vntu.edu.ua/index.php/mn/mn2021/paper/view/13213 | |
dc.subject | поляризатор | uk |
dc.subject | хвилевідний поляризатор | uk |
dc.subject | хвилевід | uk |
dc.subject | діафрагма | uk |
dc.subject | коефіцієнт елиптичності | uk |
dc.subject | фазовий зсув | uk |
dc.subject | polarizer | uk |
dc.subject | waveguide polarizer | uk |
dc.subject | waveguide | uk |
dc.subject | diaphragm | uk |
dc.subject | ellipticity coefficient | uk |
dc.subject | phase shift | uk |
dc.title | Аналіз діафрагмових поляризаторів | uk |
dc.type | Thesis | |
dc.identifier.udc | 621.396.671 | |
dc.relation.references | Wang J. Spectral efficiency improvement wit 5G technologies: results from field tests / J. Wang, A. Jin, D. Shi, L. Wang, H. Shen, D. Wu, L. Hu, L. Gu, L. Lu, Y. Chen, J. Wang // IEEE Journal on Selected Areas in Communications. 2017. Vol. 35, No. 8. pp. 1867-1875. DOI: 10.1109/JSAC.2017.2713498. | |
dc.relation.references | Bulashenko A. New traffic model of M2M Technology in 5G wireless sensor networks / A. Bulashenko, S. Piltyay, A. Polishchuk, O. Bulashenko // IEEE 2nd International Conference on Advanced Trends in Information Theory, 25-27 November 2020, Kyiv, Ukraine, pp. 125131. http://doi.org/10.1109/ATIT50783.2020.9349305. | |
dc.relation.references | Piltyay S.I. Wireless sensor network connectivity in heterogeneous 5G mobile systems / S.I. Piltyay, A.V. Bulashenko, I.V. Demchenko // IEEE International Conference on Problems of Infocommunications. Science and Technology (PIC S&T), 8-10 October 2020, Kharkiv, Ukraine, pp. 508513. | |
dc.relation.references | Bulashenko A.V. Energy efficiency of the D2D direct connection system in 5G networks / A.V. Bulashenko, S.I. Piltyay, I.V. Demchenko // IEEE International Conference on Problems of Infocommunications. Science and Technology, 8-10 October 2020, Kharkiv, Ukraine, pp. 324329. | |
dc.relation.references | Bulashenko A.V. Evaluation of D2D Communications in 5G networks / A.V. Bulashenko // Visnyk NTUU KPI Seriia Radiotekhnika, Radioaparatobuduvannia. 2020. Vol. 81. pp. 2129. (in Ukrainian). http://doi.org/10.20535/RADAP.2020.81.21-29. | |
dc.relation.references | Bulashenko A.V. Combined criterion for the choice of routing based on D2D technology / A.V. Bulashenko // Radio Electronics, Computer Science, Control. 2021. Vol. 1. pp. 713. (in Ukrainian). http://doi.org/10.15588/1607-3274-2021-1-1. | |
dc.relation.references | Bulashenko A.V. Data upload system using D2D technology in the unlicensed frequency range as part of the 5G communication system / A.V. Bulashenko // Technical Engineering. 2020. Vol. 86, No. 2. pp. 103107. (in Ukrainian). http://doi.org/10.26642/ten-2020-2(86)-103-107. | |
dc.relation.references | Bulashenko A.V. Resource allocation for low-power devices of M2M technology in 5G networks / A.V. Bulashenko // KPI Science news. 2020. Vol. 3. pp. 713. (In Ukrainian). http://doi.org/10.20535/kpisn.2020.3.203863. | |
dc.relation.references | Myronchuk O. Two-stage channel frequency response estimation in OFDM systems / O. Myronchuk, O. Shpylka, S. Zhuk // Path of Science. 2020. Vol. 6, No. 2. pp. 1001-1007. DOI: 10.22178/pos.55-1. | |
dc.relation.references | Myronchuk O. Algorithm of channel frequency response estimation in orthogonal frequency division multiplexing systems based on Kalman filter /O. Myronchuk, O. Shpylka, S. Zhuk // IEEE 15th International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering, 2529 Feb. 2020, Lviv-Slavske, Ukraine. DOI:10.1109/TCSET49122.2020.235385. | |
dc.relation.references | Myronchuk O.Y. Two-Stage Method for Joint Estimation of Information Symbols and Channel Frequency Response in OFDM Communication Systems / O.Y. Myronchuk, A.A. Shpylka, S.Y. Zhuk // Radioelectronics Communications System. 2020. Vol. 63. pp. 418429. https://doi.org/10.3103/S073527272008004X. | |
dc.relation.references | Myronchuk A.Y. Channel frequency response estimation method based on pilots filtration and extrapolation / A.Y. Myronchuk, O.O. Shpylka, S.Y. Zhuk // Visnyk NTUU KPI Seriia - Radiotekhnika Radioaparatobuduvannia. 2019. Vol. 78. pp. 36-42. DOI: 10.20535/RADAP.2019.78.36-42. | |
dc.relation.references | Piltyay S. Information resources economy in satellite systems based on new microwave polarizers with tunable posts / S. Piltyay, A. Bulashenko, H. Kushnir, O. Bulashenko // Path of Science. 2020. Vol. 6, No 11. pp. 50015010. http://doi.org/10.22178/pos.55-1. | |
dc.relation.references | Bulashenko A.V. Compact waveguide polarizer with three antiphase posts / A.V. Bulashenko, S.I. Piltyay, H.S. Kushnir, O.V. Bulashenko // Visnyk VPI. 2020. Vol. 5. pp. 97104. [In Ukrainian]. DOI: 10.31649/1997-9266-2020-151-5-97-104. | |
dc.relation.references | Bulashenko A.V. Tunable square waveguide polarizer with irises and posts / A.V. Bulashenko, S.I. Piltyay, Y.I. Kalinichenko, O.V. Bulashenko // Technical Engineering. 2020. Vol. 86, no 2. pp. 108 116. [In Ukrainian]. DOI: 10.26642/ten-2020-2(86)-108-116. | |
dc.relation.references | Piltyay S. New tunable iris-post square waveguide polarizers for satellite information systems / S. Piltyay, A. Bulashenko, H. Kushnir, O. Bulashenko // IEEE 2nd International Conference on Advanced Trends in Information Theory, 25-27 November 2020, Kyiv, Ukraine, pp. 342-348. DOI: 10.1109/ATIT50783.2020.9349357. | |
dc.relation.references | Bulashenko A. Mathematical modeling of iris-post sections for waveguide filters, phase shifters and polarizers / A. Bulashenko, S. Piltyay, Ye. Kalinichenko, O. Bulashenko // IEEE 2nd International Conference on Advanced Trends in Information Theory, 25-27 November 2020, Kyiv, Ukraine, pp. 330-336. DOI: 10.1109/ATIT50783.2020.9349321. | |
dc.relation.references | Piltyay S. FDTD and FEM simulation of microwave waveguide polarizers / S. Piltyay, A.Bulashenko, Ye. Herhil, O. Bulashenko // IEEE 2nd Int. Conf. on Advanced Trends in Information Theory, 25-27 November 2020, Kyiv, Ukraine, pp. 132-137. DOI: 10.1109/ATIT50783.2020.9349339. | |
dc.relation.references | Bulashenko A.V. Multibeam arrays on the basis of Rotman lenses / A.V. Bulashenko // Visnyk NTUU KPI Seriia Radiotekhnika, Radioaparatobuduvannia. 2010. Vol. 42. pp. 178186. http://doi.org/10.20535/RADAP.2010.42.178-186. | |