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Xiangbo Wang

5 accepted papers

2026

SR3R: Rethinking Super-Resolution 3D Reconstruction With Feed-Forward Gaussian Splatting

CVPR 2026

3D super-resolution (3DSR) aims to reconstruct high-resolution (HR) 3D scenes from low-resolution (LR) multi-view images. Existing methods rely on dense LR inputs and per-scene optimization, which restricts the high-frequency priors for constructing HR 3D Gaussian Splatting (3DGS) to those inherited

Cited by 0SourceScholar
2026

SWITCHCODEC: ADAPTIVE RESIDUAL-EXPERT SPARSE QUANTIZATION FOR HIGH-FIDELITY NEURAL AUDIO CODING

ICASSP 2026oral

Recent neural audio compression models often rely on residual vector quantization for high-fidelity coding, but using a fixed number of per-frame codebooks is suboptimal for the wide variability of audio content-especially for signals that are either very simple or highly complex. To address this li…

Cited by 0SourcePDFScholar
2025

MagicGel: A Novel Visual-Based Tactile Sensor Design with Magnetic Gel

IROS 2025

Force estimation is the core indicator for evaluating the performance of tactile sensors, and it is also the key technical path to achieving precise force feedback mechanisms. This study proposes a design method for a visual tactile sensor (VBTS) that integrates a magnetic perception mechanism, and

Cited by 1SourceScholar
2024

Bionic Soft Fingers with Hybrid Variable Stiffness Mechanisms for Multimode Grasping

ICRA 2024poster

This paper presents a novel Bionic Soft Finger (BSF) that aims to overcome the limitations of conventional rigid manipulators in terms of adaptability and safety, as well as the challenges faced by soft hands regarding carrying capacity and stability. The BSF design uses a hybrid variable stiffness…

Cited by 1SourceScholar
2024

Soft Magnetic Skin With Motion and Contact Sensing for Anthropomorphic Robotic Finger

RA-L 2024

Drawing inspiration from human fine tactile and proprioceptive kinaesthetic sensing pathways, we propose a soft magnetic skin (m-skin) with multimodal sensing functions integrated into the anthropomorphic robotic finger. This paper mainly explores the magnetic tactile sensor's structural design, per

Cited by 8SourceScholar