RA-L 20260 citations

Communication-Efficient Module-Wise Federated Learning for Grasp Pose Detection in Cluttered Environments

Woonsang Kang, Joohyung Lee, Seungjun Kim, Jungchan Cho, Yoonseon Oh

Abstract

Grasp pose detection (GPD) is a fundamental capability for robotic autonomy, but its reliance on large, diverse datasets creates significant data privacy and centralization challenges. Federated Learning (FL) offers a privacy-preserving solution, but its application to GPD is hindered by the substantial communication overhead of large models, a key issue for resource-constrained robots. To address this, we propose a novel module-wise FL framework that begins by analyzing the learning dynamics of the GPD model's functional components. This analysis identifies slower-converging modules, to which our framework then allocates additional communication effort. This is realized through a two-phase process: a standard fullmodel training phase is followed by a communication-efficient phase where only an adaptively identified subset of slowerconverging modules is trained and their partial updates are aggregated. Extensive experiments on the GraspNet-1B dataset demonstrate that our method outperforms standard FedAvg and other baselines, achieving higher accuracy for a given communication budget. Furthermore, real-world experiments on a physical robot validate our approach, showing a superior grasp success rate compared to baseline methods in cluttered scenes. Our work presents a communication-efficient framework for training robust, generalized GPD models in a decentralized manner, effectively improving the trade-off between communication cost and model performance.

BibTeX
@inproceedings{ral2026_communicationeff,
  title = {Communication-Efficient Module-Wise Federated Learning for Grasp Pose Detection in Cluttered Environments},
  author = {Woonsang Kang and Joohyung Lee and Seungjun Kim and Jungchan Cho and Yoonseon Oh},
  booktitle = {RA-L 2026},
  year = {2026}
}
Communication-Efficient Module-Wise Federated Learning for Grasp Pose Detection in Cluttered Environments · RA-L 2026