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Drone Landing Performance in Windy Conditions: Comparing the Vertical and Horizontal Landing Approaches With the EAGLES Port

June 29, 2026 by Iuri Barros, Yoshito Okada, Kenjiro Tadakuma, Masahiro Watanabe, Masashi Konyo, Kazunori Ohno, Yoshiki Yokota, Ranulfo Bezerra, Satoshi Tadokoro

Abstract:

Drone docking stations promote efficient operations of drones, but they usually support only one vehicle and are accessible primarily through vertical landing. These limitations hinder multidrone operations and result in challenges for fast precise docking, particularly under severe wind conditions. This article assesses the EAGLES Port, which uses a horizontal landing approach to address these challenges, and makes a performance comparison between horizontal and vertical landing through analysis of wind tunnel data with manually controlled drones. Results show that horizontal landing decreases the average landing duration by 35.58% and can achieve 59.67% faster docking compared to vertical landing in optimal conditions. The system also provides near-zero position error at docking and supports multiple drones. These advantages stem from improved flight stability, quicker alignment with landing targets, and a 2.8× higher average velocity compared to vertical landing. These results indicate that vertical landing is better suited for missions with wider landing zones and where delays in landing have mild consequences, whereas horizontal landing excels in scenarios where rapid accurate landings are critical.

For more about this article see link below.

https://ieeexplore.ieee.org/document/11074730/a>

For the open access PDF link of this article please click here.

Filed Under: Features Tagged With: Accuracy, Automation, Autonomous aerial vehicles, Docking stations, Drones, Robot kinematics, Wind tunnels

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As the flagship magazine of the IEEE Robotics and Automation Society, IEEE Robotics and Automation Magazine (RAM) covers the latest developments in robotics and automation. Its scope ranges from cutting-edge technological advances to emerging social, economic, ethical, and policy issues shaping the field.  Published quarterly (March, June, September, and December), RAM features both high-impact original research articles written in an engaging and accessible style, as well as reviews, columns and opinion pieces addressing a wide range of timely topics.

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IEEE Robotics & Automation Magazine  publishes four issues per year: March, June, September and December.