A Semantic Communication Approach to Fiducial Marker Processing in 5G-Enabled Edge SLAM
Boris Radovanovic, Vukan Ninkovic, Katarina Vidojevic, Buda Bajic Papuga, Dejan Vukobratovic
Abstract
Autonomous robots increasingly rely on edge computing to offload computationally intensive perception tasks while maintaining real-time operation over 5G networks. However, conventional fiducial marker detection pipelines provide limited opportunities for efficient task partitioning, making them poorly suited for communication-aware edge deployment. This paper proposes a semantic split inference framework for fiducial marker processing in 5G-enabled Edge SLAM. A DeepTag-inspired convolutional neural network is partitioned between the robot and the edge server, where intermediate feature representations serve as task-oriented semantic information transmitted over the wireless link. The framework is integrated into a ROS2-based robotic architecture and characterized over a real 5G communication testbed. Experimental results demonstrate accurate keypoint estimation, illustrate the impact on downstream pose estimation, and quantify the communication--computation trade-offs associated with different split points, providing practical insights for communication-aware deployment of deep visual perception in connected robotic systems.
Create a lesson
Related papers
Taming the Agentic RAN: Stability-Guaranteed Arbitration of Autonomous AI Agents in O-RAN
Seyed Bagher Hashemi Natanzi, Bo Tang
Reliability-Guided Trusted Repeater Node Selection in QKD-Enabled Metro Optical Networks
Arup Kumar Marik, Basabdatta Palit, Sadananda Behera
Toward Composable Network Digital Twins: A Subgraph-Based Latency Prediction Study
Shenjia Ding, David Flynn, Paul Harvey
Jamming Detection in 5G/6G Networks: From O-RAN Concept to OCUDU Deployment
Marcin Hoffmann, Lukasz Kulacz, Osama Baldo et al.
The Operable Pareto Front: Distilling Offline Search into Run-Time Control for Multi-Objective UAV Edge-Computing Scheduling
Qiao Liao, Zhiyong Feng, Bin Wu et al.
Human Exposure to Non-Ionizing Radiation from Indoor Distributed Antenna System: Shopping Mall Measurement Analysis
Júlia da L. A. Silva, Vicente A. de Sousa,, Marcio E. C. Rodrigues et al.