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Jianfeng Lin

3 accepted papers

2025

Addition of a Peristaltic Wave Improves Multi-Legged Locomotion Performance on Complex Terrains

ICRA 2025

Characterized by their elongate bodies and relatively simple legs, multi-legged robots have the potential to locomote through complex terrains for applications such as search-and-rescue and terrain inspection. Prior work has developed effective and reliable locomotion strategies for multilegged robo

Cited by 0SourceScholar
2025

Bird-Inspired Tendon Coupling Improves Paddling Efficiency by Shortening Phase Transition Times

ICRA 2025

Drag-based swimming using rowing appendages, fins, and webbed feet is a widely adopted mode of locomotion in aquatic animals. To develop efficient underwater and swimming vehicles, various bioinspired drag-based paddle designs have been proposed, often facing a trade-off between propulsive efficienc

Cited by 4SourceScholar
2023

Design and Stiffness Analysis of a Bio-Inspired Soft Actuator with Bi-Direction Tunable Stiffness Property

IROS 2023poster

Modulating the stiffness of soft actuators is crucial for improving the efficiency of interaction with the environment. However, current stiffness modulation mechanisms are hard to achieve high lateral stiffness and a wide range of bending stiffness simultaneously. Here, we draw inspiration from the…

Cited by 1SourceScholar