activity
20242026
most citedTactile sensing enables vertical obstacle negotiation for elongate many-legged robots

1 citations · 2 across the 8 of their papers we have counts for

collaborators
Showing cs.ROShow all

11 papers · 1 filter

cs.RO2026

A Robust Antenna Provides Tactile Feedback in a Multi-legged Robot

Zhaochen J. Xu, Juntao He, Delfin Aydan +5

Multi-legged elongate robots hold promise for maneuvering through complex environments. Prior work has demonstrated that reliable locomotion can be achieved using open-loop body un…

cs.RO2026

Agile asymmetric multi-legged locomotion: contact planning via geometric mechanics and spin model duality

Jackson Habala, Gabriel B. Margolis, Tianyu Wang +8

Legged robot research is presently focused on bipedal or quadrupedal robots, despite capabilities to build robots with many more legs to potentially improve locomotion performance.…

cs.RO2025

Optimal swimming with body compliance in an overdamped medium

Jianfeng Lin, Tianyu Wang, Baxi Chong +3

Elongate animals and robots use undulatory body waves to locomote through diverse environments. Geometric mechanics provides a framework to model and optimize such systems in highl…

cs.RO2025

The Omega Turn: A General Turning Template for Elongate Robots

Baxi Chong, Tianyu Wang, Kelimar Diaz +12

Elongate limbless robots have the potential to locomote through tightly packed spaces for applications such as search-and-rescue and industrial inspections. The capability to effec…

cs.RO2025

Robust control for multi-legged elongate robots in noisy environments

Baxi Chong, Juntao He, Daniel Irvine +8

Modern two and four legged robots exhibit impressive mobility on complex terrain, largely attributed to advancement in learning algorithms. However, these systems often rely on hig…

cs.RO20251 cited

Tactile sensing enables vertical obstacle negotiation for elongate many-legged robots

Juntao He, Baxi Chong, Massimiliano Iaschi +3

Many-legged elongated robots show promise for reliable mobility on rugged landscapes. However, most studies on these systems focus on planar motion planning without addressing rapi…