UCHUVCHISIZ UCHISH APPARATLARINI LOYIHALASH VA PARVOZ XUSUSIYATLARINI BAHOLASH METODOLOGIYALARI

Authors

  • Turg‘unbek Alimov Abdimalik o‘g‘li Author
  • Jonibek Shukurov Razzoq o‘g‘li Author
  • Yusufjon Ergashev Erkin o‘g‘li Author

Keywords:

Kalit so‘zlar: Uuchuvchisiz uchish apparati, UUA, aerodinamika, parvoz samaradorligi, loyihalash metodologiyasi, MDO, optimallashtirish, konseptual loyihalash, CFD, FEA.

Abstract

Annotatsiya: Mazkur tezisda uchuvchisiz uchish apparatlarini (UUA) loyihalash va ularning parvoz xususiyatlarini baholashda qo‘llaniladigan zamonaviy metodologiyalar tahlil qilingan. Tadqiqotda konseptual loyihalash, dastlabki og‘irlikni aniqlash, aerodinamik hisoblashlar, konstruktiv tahlil, harakatlantiruvchi tizimni tanlash hamda parvoz samaradorligini baholash bosqichlari ko‘rib chiqilgan. Shuningdek, ko‘p fanli loyihalash optimallashtirish (Multidisciplinary Design Optimization – MDO) yondashuvining afzalliklari yoritilib, uning uchuvchisiz uchish apparatlarini samarali loyihalashdagi o‘rni asoslab berilgan. Tadqiqot natijalari UUAni loyihalash jarayonini takomillashtirish, loyihalash muddatini qisqartirish va parvoz samaradorligini oshirish uchun ilmiy-amaliy tavsiyalarni ishlab chiqishga xizmat qiladi.

Abstract: This thesis analyzes modern methodologies used in the design and performance evaluation of Unmanned Aerial Vehicles (UAVs). The study examines the main stages of UAV development, including conceptual design, preliminary weight estimation, aerodynamic analysis, structural assessment, propulsion system selection, and flight performance evaluation. In addition, the advantages of the Multidisciplinary Design Optimization (MDO) approach are discussed, highlighting its role in improving the efficiency and effectiveness of UAV design. The findings provide practical recommendations for enhancing the UAV design process, reducing development time, and improving overall flight performance. The presented methodology can serve as a useful reference for researchers and engineers involved in the design and optimization of modern unmanned aerial systems.

References

Published

2026-08-05