Published October 4, 2026
| Version v1
Journal article
Open
UAV ASOSIDA 5G MOBIL ALOQA QAMROVINI ADAPTIV TIKLASH VA OPTIMAL JOYLASHUVNI ANIQLASH
Authors/Creators
- 1. texnika fanlari falsafa doktori (PhD) Muhammad al-Xorazmiy nomidagi TATU
- 2. Radio va mobil aloqa fakulteti talabasi Muhammad al-Xorazmiy nomidagi TATU
Description
Ushbu maqolada mobil aloqa uzilgan yoki signal darajasi pasaygan hududlarda uchuvchisiz uchish apparatlari (UAV) yordamida 5G tarmog'i qamrovini adaptiv tiklash hamda UAVning optimal koordinatalarini aniqlash masalalari tadqiq etilgan. Taklif etilayotgan tizim mavjud bazaviy stansiyalarning aloqa sifatini baholash, optimal magistral aloqa tarmog'i (backhaul) manbasini tanlash va UAVning uch o'lchamli (3D) joylashuvini aniqlash algoritmlariga asoslanadi. Tadqiqotda UAV platformasida 2×2 MIMO magistral aloqa kanali hamda 360° gorizontal qamrovni shakllantiruvchi uchta 2×2 MIMO sektor antennalaridan foydalanish modeli ko'rib chiqilgan. Optimal joylashuvni aniqlashda RSRP, RSRQ, SINR, qamrov maydoni, tarmoq o'tkazuvchanligi va energiya sarfi ko'rsatkichlari kompleks hisobga olingan. Shuningdek, tarmoq parametrlari va ishlash sharoitlari o'zgarganda UAV koordinatalarini dinamik qayta optimallashtirish usuli ishlab chiqilgan.
Files
52_1309-383-390-Abdullaev.pdf
Files
(691.3 kB)
| Name | Size | Download all |
|---|---|---|
|
md5:80748f5d2064c186e5f5d2053302849c
|
691.3 kB | Preview Download |
Additional details
References
- Zeng, Y., Zhang, R., & Lim, T. J. (2016). Wireless communications with unmanned aerial vehicles: Opportunities and challenges. IEEE Communications Magazine, 54(5), 36–42. https://doi.org/10.1109/MCOM.2016.7470933
- Zeng, Y., Wu, Q., & Zhang, R. (2019). Accessing from the sky: A tutorial on UAV communications for 5G and beyond. Proceedings of the IEEE, 107(12), 2327–2375. https://doi.org/10.1109/JPROC.2019.2952892
- Elnabty, S., Abdelbaqi, A., & El-Kashlan, M. (2022). UAV placement optimization in wireless networks: A comprehensive survey. IEEE Open Journal of the Communications Society, 3, 1420–1452. https://doi.org/10.1109/OJCOMS.2022.3198541
- Gao, X., Dai, L., Zhang, Y., & Wang, J. (2021). Wireless backhaul for 5G and beyond UAV networks: Architecture, performance, and challenge. IEEE Wireless Communications, 28(2), 108–115. https://doi.org/10.1109/MWC.001.2000298
- Khuwaja, A. A., Chen, Y., Zhao, N., Al-Ouahab, M., & Zhang, R. (2018). A survey of channel modeling for UAV communications. IEEE Communications Surveys & Tutorials, 20(4), 2804–2821. https://doi.org/10.1109/COMST.2018.2856587
- Alzenad, M., El-Keyi, A., Lagum, F., & Yanikomeroglu, H. (2017). 3-D placement of an unmanned aerial vehicle base station for maximum coverage of terrestrial users. IEEE Wireless Communications Letters, 6(4), 434–437. https://doi.org/10.1109/LWC.2017.2700840
- Al-Hourani, A., Kandeepan, S., & Lardner, S. (2014). Optimal LAP altitude for maximum coverage. IEEE Wireless Communications Letters, 3(6), 569–572. https://doi.org/10.1109/LWCL.2014.2342736