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September 16, 2025Infrastructures4 citationsOpen Access

Strategic Vertiport Placement for Airport Access: Utilizing Urban Air Mobility for Accelerated and Reliable Transportation

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VVVasileios VolakakisHMHani S. Mahmassani

Key Points

  • The proposed framework identified a range of 5 to 12 vertiports for optimal coverage in Chicago.
  • Results indicate over 95% demand coverage for urban air mobility with the right number of facilities.
  • Utilizing the capacitated facility location problem approach allows for strategic infrastructure placement.
  • Operational costs are crucial, balancing facility capacity and service radius to meet transportation needs.

Abstract

Airport-bound access and egress trips comprise a significant portion of total ground transportation trips, especially in regions served by large airports. Connecting urban areas with airports under minimal travel delays can be challenging, with traffic congestion along busy connecting corridors being a common phenomenon. Urban Air Mobility (UAM) is a new transportation mode envisioned to reduce travel times using specific aircraft, such as electric (and non-electric) Vertical or Short Take-off and Landing aircraft (e/VTOLs and STOLs, respectively). The operation of these aircraft requires take-off and landing infrastructure known as vertiports. A strategic infrastructure placement framework was introduced, utilizing and adapting the Capacitated Facility Location Problem (a-CFLP) and the Maximal Covering Location Problem (a-MCLP) with capacity constraints. An adapted capacitated k-means algorithm and a greedy heuristic were considered for the solution of the a-CFLP, while the a-MCLP was formulated as a mixed-integer linear programming problem. The proposed framework was applied in the Chicago Metropolitan Area, revealing that various trade-offs regarding coverage and accessibility, versus operational costs (number of facilities, facility capacity, and service radius), exist. The results showed that, depending on vertiport capacity and service radius capabilities, a range of 5 to 12 vertiports can sufficiently address the demand (above 95% demand coverage) and, with respect to accessibility, serve a moderate UAM demand scenario of 6124 daily requests, as identified for this region.

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Cite This Study

Volakakis et al. (2025) studied this question.

synapsesocial.com/papers/68d4507931b076d99fa57d2ehttps://doi.org/10.3390/infrastructures10090242
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The Selection of Vertiport Location for On-Demand Mobility and Its Application to Seoul Metro Area2019 · 134 citations
  2. 2Evaluation of Key Operational Constraints Affecting On-Demand Mobility for Aviation in the Los Angeles Basin: Ground Infrastructure, Air Traffic Control and Noise2017 · 75 citations
  3. 3A new greedy approach for facility location problems2002 · 53 citations
  4. 4Reactive Grasp And Tabu Search Based Heuristics For The Single Source Capacitated Plant Location Problem1999 · 107 citations
  5. 5Integrating Urban Air Mobility into a Public Transit System: A GIS-Based Approach to Identify Candidate Locations for Vertiports2023 · 25 citations