Skip to content
Conference

Stable Grasping Strategy for Robots on Flexible Mesh via Integration of Haptic Sensing and VLM

Aug 2026 · 2026 IEEE International Conference on Mechatronics and Automation (ICMA) · pp. 14-19 · 0 citations · 12 references

Abstract

The maintenance of deep-sea net cages, specifically net cleaning and chemical coating application, is currently hindered by intensive labor requirements and the inherent risks of high-altitude maritime operations. Consequently, developing automated climbing robots offers significant advantages in both safety and operational efficiency. However, unlike rigid surfaces, the flexible netting of sea cages is characterized by easy deformation, discontinuity, and an unstructured nature. During climbing, robots frequently encounter unstable grasping or unexpected interference between the gripper and the mesh, which serves as a primary bottleneck for engineering applications. To address these challenges, this paper develops a novel robotic gripper structure specifically designed for climbing flexible netting and proposes a gripper state monitoring system based on multi-modal information fusion. Experimental results conducted in both PyBullet physics simulations and on a physical flexible netting testbed demonstrate that this multi-modal fusion system effectively compensates for the inability of single-force sensors to perceive spatial geometric relationships. This integration significantly enhances grasping stability and operational safety on unstructured, flexible net surfaces.

View source

Similar papers

Conference Aug 2026

Adaptive In-Hand Manipulation: Design of a Contact-Aware Modular Robot Finger with Active Surfaces

Robot in-hand manipulation is vital for dexterity, but it presents key challenges to stably manipulate objects with varying sizes and shapes while perceiving real-time contact states. Dexterous hands offer precision but are complex and expensive, whereas underactuated hands are simple but lack active dexterity and real...

Tong Ling, Wei-Min Li, Z. Xi et al. · 0 citations
Preprint Sep 2026

From Transportation to Manipulation: Enabling Grasping in Magnetic Robotics

Magnetic levitation (MagLev) systems have great potential for application in high-mix, low-volume manufacturing due to their scalability and flexibility, enabling highly reconfigurable in-machine material flow. However, their manipulation capabilities remain largely unexploited, as current applications almost exclusive...

Lara Bergmann, Noah Greis, Cedric Grothues et al. · 0 citations
Preprint Sep 2026

Control Architecture for Safe Grasping of Fragile Objects Using a Coarse Position-Controlled Gripper

A geometry-aware force/torque-based contact estimation method for a coarse position-controlled gripper, combined with an adaptive admittance controller for safe grasp acquisition, that enables compliant and stable grasps while avoiding excessive forces is presented.

Marko Pavlic, Moritz Geier, Timo Markert et al. · 0 citations
Open access Aug 2026

Aerial tactile perching via an anthropomorphic hand with embodied soft tactile receptors

Aerial robots are widely employed for exploration, inspection, and environmental monitoring, where their agility and maneuverability are strong assets. However, their endurance remains limited, inhibiting their applicability in long-term missions. Perching, the ability to attach to environmental structures and rest wit...

Anton Bredenbeck, Anish Jadoenathmisier, Salua Hamaza · 1 citation
Open access Sep 2026

From Vision to Grasp: TCP Dynamic Realignment Using Embedded Sensors

The integration of robotics into agriculture addresses challenges such as labour shortages and sustainable production. Handling delicate and irregular natural products remains difficult for conventional grippers. This paper presents a baromorphic end-effector as a proof-of-concept platform for validating a perception-s...

N. Al Khatib, D. Cafolla · 0 citations
Open access Sep 2026

ARTiS: An Adaptive Robotic Gripper for Enhanced Tool Manipulation in Disassembly Applications

Grasping and holding tools while using them presents a considerable challenge not only for robots but also for humans. Such a challenge is particularly noticeable in processes involving assembly and disassembly, where efficiency and consistency depend on performing rapidly adaptive tasks. Nonetheless, contemporary robo...

R. Mykhailyshyn, Y. Domae, Kensuke Harada · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.