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eVTOL Aircraft for Last-Mile Delivery: Opportunities, Challenges, and Climate Considerations

  • Badar Ali
  • , Mingkai Wang
  • , Mohamed Elhesasy
  • , Yahya Khurshid
  • , Mohamed M. Kamra
  • , Tarek N. Dief*
  • *Corresponding author for this work
  • United Arab Emirates University

Research output: Contribution to journalArticlepeer-review

Abstract

With the increasing demand for sustainable and efficient last-mile delivery, electric vertical take-off and landing (eVTOL) aircraft are emerging as a groundbreaking solution. By bypassing the challenges of ground congestion, eVTOL systems can reach hard-to-access urban and rural areas, transforming delivery networks. This paper presents a structured and systematic review of eVTOL technologies across five domains: design and aerodynamics, control strategies, energy systems, last-mile delivery integration, and climate-related performance constraints. Unlike descriptive surveys, the review synthesizes evidence across studies to identify cross-domain trade-offs, performance limitations, and operational implications for short-range, hover-dominant delivery missions. To make the role of atmospheric conditions explicit, we introduce a compact climate–performance interaction framework that links key climate variables (wind, temperature, density-altitude, and precipitation) to aerodynamic, control, and energy metrics relevant for VTOL last-mile operations. Building on this framework, we examine how operational weather conditions such as wind, extreme temperatures, and precipitation impact eVTOL performance and mission reliability. Particular emphasis is placed on climate influences, which remain underexamined yet critically shape operational feasibility in densely built environments. Using a transparent inclusion and classification framework, the study evaluates how eVTOL performance, autonomy, and energy efficiency interact with logistics demands and urban constraints. The paper identifies critical gaps in research: (1) improving the ability of eVTOLs to adapt to unpredictable weather, (2) enhancing energy management and advancing battery technologies, (3) increasing the role of autonomy, artificial intelligence (AI), and machine learning in navigation, (4) seamlessly integrating eVTOLs into larger logistics networks, and (5) exploring the potential of multi-drone swarming. Overall, this review demonstrates that the successful deployment of eVTOLs for last-mile delivery depends on coordinated advances in aircraft design, autonomy, energy systems, infrastructure, and climate-aware planning. The synthesis presented herein provides a foundation for future research and the development of scalable, resilient, and sustainable eVTOL delivery ecosystems.

Original languageEnglish
JournalUnmanned Systems
DOIs
StateAccepted/In press - 2026

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy
  2. SDG 11 - Sustainable Cities and Communities
    SDG 11 Sustainable Cities and Communities
  3. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • electric propulsion
  • eVTOL
  • last mile delivery
  • power technology
  • smart cities
  • unmanned aerial vehicles (UAVs)

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