CERESResearch Repository

UAV operations and vertiport capacity evaluation with a mixed-reality digital twin for future urban air mobility viability

Loading...
Thumbnail Image

Date published

Free to read from

2025-09-19

Supervisor/s

Industry supervisor/s

Journal Title

Journal ISSN

Volume Title

Publisher

Department

Course name

ISSN

2504-446X

Format

Citation

Zhao J, Wen Z, Mohanta K, et al., (2025) UAV operations and vertiport capacity evaluation with a mixed-reality digital twin for future urban air mobility viability. Drones, Volume 9, Issue 9, September 2025, Article number 621

Abstract

This study presents a high-fidelity digital twin (DT) framework designed to evaluate and improve vertiport operations for Advanced Air Mobility (AAM). By integrating Unreal Engine, AirSim, and Cesium, the framework enables real-time simulation of Unmanned Aerial Vehicles (UAVs), including unmanned electric vertical take-off and landing (eVTOL) operations under nominal and disrupted conditions, such as adverse weather and engine failures. The DT supports interactive visualisation and risk-free analysis of decision-making protocols, vertiport layouts, and UAV handling strategies across multi-scenarios. To validate system realism, mixed-reality experiments involving physical UAVs, acting as surrogates for eVTOL platforms, demonstrate consistency between simulations and real-world flight behaviours. These UAV-based tests confirm the applicability of the DT environment to AAM. Intelligent algorithms detect Final Approach and Take-Off (FATO) areas and adjust flight paths for seamless take-off and landing. Live environmental data are incorporated for dynamic risk assessment and operational adjustment. A structured capacity evaluation method is proposed, modelling constraints including turnaround time, infrastructure limits, charging requirements, and emergency delays. Mitigation strategies, such as ultra-fast charging and reconfiguring the layout, are introduced to restore throughput. This DT provides a scalable, drone-integrated, and data-driven foundation for vertiport optimisation and regulatory planning, supporting safe and resilient integration into the AAM ecosystem.

Description

This article belongs to the Special Issue Recent Developments in Artificial Intelligence and Interdisciplinary Research for UAV Application

Software description

Software language

Git repository

Keywords

40 Engineering, 4602 Artificial Intelligence, 11 Sustainable Cities and Communities, 46 Information and computing sciences, advanced air mobility, vertiport, digital twin, eVTOL, UAV, mixed reality, capacity evaluation, unreal engine, AirSim

DOI

Rights

Attribution 4.0 International

Funder/s

Grant number

Relationships

Relationships

Resources