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20242026
most citedLearning-enhanced electronic skin for tactile sensing on deformable surface based on electrical impedance tomography

10 citations · 11 across the 8 of their papers we have counts for

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cs.RO2026

A virtual-variable-length method for robust inverse kinematics of multi-segment continuum robots

Weiting Feng, Federico Renda, Yunjie Yang +1

This paper proposes a new, robust method to solve the inverse kinematics (IK) of multi-segment continuum manipulators. Conventional Jacobian-based solvers, especially when initiali…

cs.RO2026

Gust Estimation and Rejection with a Disturbance Observer for Proprioceptive Underwater Soft Morphing Wings

Tobias Cook, Leo Micklem, Huazhi Dong +3

Unmanned underwater vehicles are increasingly employed for maintenance and surveying tasks at sea, but their operation in shallow waters is often hindered by hydrodynamic disturban…

cs.RO2025

Computing forward statics from tendon-length in flexible-joint hyper-redundant manipulators

Weiting Feng, Kyle L. Walker, Yunjie Yang +1

Hyper-redundant tendon-driven manipulators offer greater flexibility and compliance over traditional manipulators. A common way of controlling such manipulators relies on adjusting…

cs.RO2025

Efficient Tactile Perception with Soft Electrical Impedance Tomography and Pre-trained Transformer

Huazhi Dong, Ronald B. Liu, Sihao Teng +5

Tactile sensing is fundamental to robotic systems, enabling interactions through physical contact in multiple tasks. Despite its importance, achieving high-resolution, large-area t…

cs.RO2025

Optimized Lattice-Structured Flexible EIT Sensor for Tactile Reconstruction and Classification

Huazhi Dong, Sihao Teng, Xu Han +3

Flexible electrical impedance tomography (EIT) offers a promising alternative to traditional tactile sensing approaches, enabling low-cost, scalable, and deformable sensor designs.…

cs.RO202510 cited

Learning-enhanced electronic skin for tactile sensing on deformable surface based on electrical impedance tomography

Huazhi Dong, Xiaopeng Wu, Delin Hu +3

Electrical Impedance Tomography (EIT)-based tactile sensors offer cost-effective and scalable solutions for robotic sensing, especially promising for soft robots. However a major i…