Reliability analysis of a multirotor flight module of a high-altitude telecommunications platform operating in a random environment

One of the promising directions in the framework of the concept of creating the next-generation 5G/IMT-2020 networks is the development of broadband wireless networks based on autonomous unmanned aerial vehicles (UAVs). In addition to the interest in autonomous UAV-based high-altitude platforms (HAPs), leading researchers are currently engaged in the design and implementation of tethered unmanned HAPs, which are intended to be long-term operating and are widely used in civilian and military areas. Their possibility of long-term operation, which is one of the main advantages over autonomous UAVs, puts forward new reliability requirements. In this paper we study an analytical reliability model of the multi rotor flight module of the tethered HAP as a homogeneous hot-standby system consisting of $n$ elements operating in a random environment. A general Markov reliability model of the considered system operating in a random environment is proposed, which accounts for the increase in the functional load and the location of the failed components. © 2020 IEEE.

Authors
Nguyen D.P.1 , Kozyrev D.V. 2, 3
Publisher
Institute of Electrical and Electronics Engineers Inc.
Language
English
Status
Published
Number
9431312
Year
2020
Organizations
  • 1 School of Radio Engineering and Computer Technology, Moscow Institute of Physics and Technology, National Research University, Dolgoprudny, Moscow Region, Russian Federation
  • 2 Peoples Friendship University of Russia, Rudn University, 6 Miklukho-Maklaya St, Moscow, 117198, Russian Federation
  • 3 V. A. Trapeznikov Institute of Control Sciences of Russian, Academy of Sciences, Moscow, Russian Federation
Keywords
Hexacopter; K-out-of-n systems; Random environment; Reliability analysis; Tethered high-altitude platform; UAV
Date of creation
16.12.2021
Date of change
16.12.2021
Short link
https://repository.rudn.ru/en/records/article/record/76355/
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