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Performance Analysis and Conceptual Design of Lightweight UAV for Urban Air Mobility

Semantic Scholar · Article (Drones) · 78ae0b315ce82b0ec2ec2e2267a62bbe274c9095 · Published 2024-09-20 · Drones · 5 authors

Abstract and citation only, verbatim from Semantic Scholar; full text lives there. All credit to the authors and Drones.

Abstract

In the present study, a performance analysis of three different VTOL configurations is presented within an urban air mobility context. A classical lightweight helicopter was employed as a reference configuration to design a dual-rotor side-by-side helicopter and a hexacopter drone layout. An analytical model based on general momentum and blade element theories was developed for single- and multiple-rotor configurations in horizontal and vertical flight conditions. Suitable battery pack and electric motor designs were produced to evaluate the endurance and range of the different configurations for a specific mission. This paper provides fundamental insights into the endurance and range capabilities of multiple-rotor unmanned aerial vehicles (UAVs) and a qualitative discussion on the safety and acceptability features of each configuration implemented in an advanced air mobility context. As a result, the side-by-side helicopter configuration was identified as the best solution to be introduced within urban environments, fulfilling all the performance and mission requirements.

Authors

  • Francesco Mazzeo
  • E. D. de Angelis
  • Fabrizio Giulietti
  • A. Talamelli
  • F. Leali

Keywords

  • Engineering
  • Environmental Science

Citation

Francesco Mazzeo, E. D. de Angelis, Fabrizio Giulietti , et al. (2024). Performance Analysis and Conceptual Design of Lightweight UAV for Urban Air Mobility. Drones. Semantic Scholar ID 78ae0b315ce82b0ec2ec2e2267a62bbe274c9095. https://doi.org/10.3390/drones8090507 ↗