Abstract

Extending single Unmanned Aerial Vehicles (UAVs) exploration methods to multi-UAV teams can improve coverage speed and robustness, but introduces challenges such as consistent mapping, safe navigation, and deployment strategy. In this work, we present a centralized multi-UAV exploration framework that enables the use of existing single-UAV sampling-based planners in a multi-UAV setting. The proposed architecture allows multiple UAVs to collaboratively explore unknown environments using a shared global Truncated Signed Distance Field (TSDF) map and centralized planning. Building on the voxblox library, we adapt its mapping pipeline to support real-time fusion of depth measurements from multiple UAVs into a common TSDF representation. In addition, inter-UAV collision avoidance and robot self-filtering mechanisms are integrated into the system to ensure safe navigation and prevent reconstruction of other UAVs as static obstacles. The framework is evaluated in simulation using four sampling-based exploration planners - RH-NBVP, KRH-NBVP, AEP, and KAEP - whose core sampling logic is preserved, with only system-level adaptations for multi-UAV operation. Experiments are conducted across multiple environments and under two deployment configurations: Joint Start (JS), where UAVs are initialized in close proximity, and Separated Start (SS), where UAVs are initialized in distinct locations. Results show that SS deployments consistently achieve faster exploration and improved coverage across all planners, highlighting the importance of the deployment strategy in multi-UAV exploration performance.

Keywords

Subject

Publication details

Journal
Not available
Open access
Green open access

Cite this article

APA 7

Mendes, J. F., Basiri, M., & Ventura, R. (2026). Centralized Multi-UAV Exploration and 3D Reconstruction Using Single-UAV Planners. https://omanscience.com/en/articles/centralized-multi-uav-exploration-and-3d-reconstruction-using-single-uav-planners

MLA 9

Mendes, João Félix, et al. "Centralized Multi-UAV Exploration and 3D Reconstruction Using Single-UAV Planners." https://omanscience.com/en/articles/centralized-multi-uav-exploration-and-3d-reconstruction-using-single-uav-planners.

Chicago (author–date)

Mendes, João Félix, Meysam Basiri, and Rodrigo Ventura. 2026. "Centralized Multi-UAV Exploration and 3D Reconstruction Using Single-UAV Planners." https://omanscience.com/en/articles/centralized-multi-uav-exploration-and-3d-reconstruction-using-single-uav-planners.

Harvard

Mendes, J. F., Basiri, M. and Ventura, R. (2026) 'Centralized Multi-UAV Exploration and 3D Reconstruction Using Single-UAV Planners', Available at: https://omanscience.com/en/articles/centralized-multi-uav-exploration-and-3d-reconstruction-using-single-uav-planners.

Vancouver

Mendes JF, Basiri M, Ventura R. Centralized Multi-UAV Exploration and 3D Reconstruction Using Single-UAV Planners. https://omanscience.com/en/articles/centralized-multi-uav-exploration-and-3d-reconstruction-using-single-uav-planners

IEEE

J. F. Mendes, M. Basiri, and R. Ventura, "Centralized Multi-UAV Exploration and 3D Reconstruction Using Single-UAV Planners," https://omanscience.com/en/articles/centralized-multi-uav-exploration-and-3d-reconstruction-using-single-uav-planners.