CORTEXA
← Browse
arxivcs.RO2026-06-27Cited by 0

Cross-Session 3D LiDAR and Camera Fusion for Robust Localization of Unmanned Aerial Vehicles in GPS-Denied Environments

Cong Hoang Quach, Chi Thanh Vo, Dong LT. Tran, Truong Son Nguyen, Manh Duong Phung, Thuan Hoang Tran

Accurate localization of unmanned aerial vehicles (UAVs) is essential for applications such as structural health monitoring, especially in environments where Global Positioning System (GPS) signals are denied or unreliable, like indoor spaces, tunnels, urban canyons, or areas beneath large structures. To address this challenge, we propose Cross-Fusion, a novel method for real-time UAV localization that integrates data from a 3D Light Detection and Ranging (LiDAR) and a monocular camera. A key contribution is its cross-session fusion strategy, which integrates visual and geometric information collected from multiple agents during routine baseline surveys to improve localization consistency and map completeness. The system employs LiDAR-based odometry for motion tracking and image-based feature matching via a single red-green-blue (RGB) camera to correct drift and improve accuracy. Unlike visual-inertial systems, Cross-Fusion maintains a simple sensor setup and avoids the complexity of stereo or global shutter configurations. Experimental results demonstrate that Cross-Fusion achieves localization accuracy comparable to GPS-based methods and performs reliably in challenging feature-sparse environments.

View free PDFSource page

Related papers

arxivcs.ROcs.CV2026-07-21

NGPS: GPS-Denied Aerial Geo-Localization and 2.5D Reconstruction via Deep Satellite Image Matching and Multi-Rate Sensor Fusion

Sanket Sharma

We present NGPS (Next-Generation Positioning System), a visual geo-localization framework for high-altitude UAVs that provides GPS-free absolute positioning by matching down-facing images to georeferenced satellite imagery with deep features. The system combines (1) adaptive conf…

View free PDFSource page
arxivcs.RO2026-07-20

Polar Coordinate-based Differential Evolution for Moving Target Search Using Vision Sensor on Unmanned Aerial Vehicles

Thu Hang Khuat, Duy-Nam Bui, Thuy Ngan Duong, Manh Duong Phung

In search and rescue operations, there is a period known as the "golden time" during which the probability of finding the target alive is highest. The objective of this work is to propose a new search algorithm for unmanned aerial vehicles (UAVs) with a focus on improving the det…

View free PDFSource page
arxivcs.RO2026-07-22

Decentralized UAV Swarms for Ground Target Protection in GPS- and Communication-Denied Environments

Dimitria Silveria, Paulo Ricardo Marques de Araujo, Tiago Nascimento, Sidney Givigi

The presence of UAVs in military operations has recently increased, also increasing the demand for defense systems against UAV attacks. UAVs can also be used as countermeasures. Most available methods rely on UAV-to-UAV communication and global positioning. However, such resource…

View free PDFSource page
arxivcs.RO2026-07-20

Lifelong Localization in Dynamic Indoor Environments Combining Odometry with Sparse Distance Sampling

Michael M. Bilevich, Tomer Buber, Dan Halperin

Localization is a key task in robot navigation, and many techniques exist for it. In many plausible scenarios, a robot might face unforeseen, dynamic obstacles, rendering any pre-determined map inaccurate for localization. In this work, we propose a robust lifelong localization f…

View free PDFSource page
arxivcs.ROcs.MA2026-07-22

Remote ID Spoofing-Aware Trajectory Planning for Small Unmanned Aerial Systems

Jeremiah Webb, Bryce Bjorkman, Abel Diaz Gonzalez, Austin Coursey, Noah Dahle, Kailani Lemieux Mack, et al.

This work presents a decentralized, spoofing-aware trajectory planning framework for small unmanned aerial systems operating under Remote Identification (RID) location spoofing attacks. Existing planners typically assume RID broadcasts are trustworthy, which can increase the risk…

View free PDFSource page
arxivcs.ROeess.SY2026-07-18

An Indoor Navigation System for the Visually Impaired based on UWB Positioning and D* Lite Path Planning Algorithm

Thanh C. Vo, Dong LT. Tran, Huy HM. Le, Duyen N Ha, Tuan Anh Pham, Hai Thanh Dang, et al.

This paper proposes an indoor navigation system for the visually impaired, leveraging Ultra-Wideband (UWB) positioning technology and the D*Lite path planning algorithm. The system utilizes UWB sensors to provide precision localization in GPS-denied environments. The D* Lite algo…

View free PDFSource page