← Search

Baxi Chong

11 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

Effective Self-Righting Strategies for Elongate Multi-Legged Robots

ICRA 2025

Centipede-like robots offer an effective and robust solution to navigation over complex terrain with minimal sensing. However, when climbing over obstacles, such multi-legged robots often elevate their center-of-mass into unstable configurations, where even moderate terrain uncertainty can cause tip

Cited by 2SourceScholar
2025

Steering Elongate Multi-legged Robots by Modulating Body Undulation Waves

IROS 2025

Centipedes exhibit great maneuverability in diverse environments due to their many legs and body-driven control. By leveraging similar morphologies and control strategies, their robotic counterparts also demonstrate effective terrestrial locomotion. However, the success of these multi-legged robots

Cited by 3SourceScholar
2025

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

RSS 2025poster

Many-legged elongated robots show promise for reliable mobility on rugged landscapes. However, most studies on these systems focus on motion planning in the 2D horizontal plane (e.g., translation and rotation) without addressing rapid vertical motion. Despite their success on mild rugged terrains, r…

Cited by 0PDFScholar
2023

Gait design for limbless obstacle aided locomotion using geometric mechanics

RSS 2023poster

Limbless robots have the potential to maneuver through cluttered environments that conventional robots cannot traverse. As illustrated in their biological counterparts such as snakes and nematodes, limbless locomotors can benefit from interactions with obstacles, yet such obstacle-aided locomotion (…

Cited by 5SourcePDFScholar
2022

Generalized Omega Turn Gait Enables Agile Limbless Robot Turning in Complex Environments

ICRA 2022poster

Reorientation (turning in plane) plays a critical role for all robots in any field application, especially those that in confined spaces. While important, reorientation remains a relatively unstudied problem for robots, including limbless mechanisms, often called snake robots. Instead of looking at…

Cited by 11SourceScholar
2021

Moving sidewinding forward: optimizing contact patterns for limbless robots via geometric mechanics

RSS 2021poster

Contact planning is crucial to the locomotion performance of limbless robots. Typically; the pattern by which contact is made and broken between the mechanism and its environment determines the motion of the robot. The design of these patterns; often called contact patterns; is a difficult problem.…

Cited by 12SourcePDFScholar
2021

Reconstruction of Backbone Curves for Snake Robots

RA-L 2021

Snake robots composed of alternating single-axis pitch and yaw joints have many internal degrees of freedom, which make them capable of versatile three-dimensional locomotion. In motion planning process, snake robot motions are often designed kinematically by a chronological sequence of continuous b

Cited by 19SourceScholar
2020

Optimizing coordinate choice for locomotion systems with toroidal shape spaces

IROS 2020poster

In a geometric mechanics framework, the configuration space is decomposed into a shape space and a position space. The internal motion of the system is prescribed by a closed loop in the shape space, which causes net motion in the position space. If the shape space is a simply connected domain in an…

Cited by 9SourceScholar
2020

The Omega Turn: A Biologically-Inspired Turning Strategy for Elongated Limbless Robots

IROS 2020poster

Snake robots have the potential to locomote through tightly packed spaces, but turning effectively within unmodelled and unsensed environments remains challenging. Inspired by a behavior observed in the tiny nematode worm C. elegans, we propose a novel in-place turning gait for elongated limbless ro…

Cited by 10SourceScholar
2018

Coordination of back bending and leg movements for quadrupedal locomotion

RSS 2018poster

Many quadrupedal animals have lateral degrees of freedom in their backs that assist locomotion. This paper seeks to use a robotic model to demonstrate that back bending assists not only forward motion, but also lateral and turning motions. This paper uses geometric mechanics to prescribe gaits that…

Cited by 40SourcePDFScholar