paper-with-me

홈 › Papers

Effect of Gait Design on Proprioceptive Sensing of Terrain Properties in a Quadrupedal Robot

2025-09-26 · Ethan Fulcher, J. Diego Caporale, Yifeng Zhang, John Ruck, Feifei Qian arxiv

In-situ robotic exploration is an important tool for advancing knowledge of geological processes that describe the Earth and other Planetary bodies. To inform and enhance operations for these roving laboratories, it is imperative to understand the terramechanical properties of their environments, especially for traversing on loose, deformable substrates. Recent research suggested that legged robots with direct-drive and low-gear ratio actuators can sensitively detect external forces, and therefore possess the potential to measure terrain properties with their legs during locomotion, providing unprecedented sampling speed and density while accessing terrains previously too risky to sample. This paper explores these ideas by investigating the impact of gait on proprioceptive terrain sensing accuracy, particularly comparing a sensing-oriented gait, Crawl N' Sense, with a locomotion-oriented gait, Trot-Walk. Each gait's ability to measure the strength and texture of deformable substrate is quantified as the robot locomotes over a laboratory transect consisting of a rigid surface, loose sand, and loose sand with synthetic surface crusts. Our results suggest that with both the sensing-oriented crawling gait and locomotion-oriented trot gait, the robot can measure a consistent difference in the strength (in terms of penetration resistance) between the low- and high-resistance substrates; however, the locomotion-oriented trot gait contains larger magnitude and variance in measurements. Furthermore, the slower crawl gait can detect brittle ruptures of the surface crusts with significantly higher accuracy than the faster trot gait. Our results offer new insights that inform legged robot "sensing during locomotion" gait design and planning for scouting the terrain and producing scientific measurements on other worlds to advance our understanding of their geology and formation.

📄 PDF Abstract BibTeX arXiv:2509.22065

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Gait-Adaptive Perceptive Humanoid Locomotion with Real-Time Under-Base Terrain Reconstruction

2025-12-08 · Haolin Song, Hongbo Zhu, Tao Yu, Yan Liu 외 arxiv

For full-size humanoid robots, even with recent advances in reinforcement learning-based control, achieving reliable locomotion on complex terrains, such as long staircases, remains challenging. In such settings, limited…

Reinforcement Learning

Physics-Guided Biomechanical Gait Adaptation for Humanoid Locomotion on Extreme Sloped Terrains

2026-07-08 · Xuanyu Chen, Mohan Liu, Dengchen Mei, Zhihao Gu 외 arxiv

Model-free reinforcement learning has enabled impressive humanoid locomotion; however, control on steep slopes remains largely unexplored. Unlike flat or discrete terrains, sloped terrains impose a persistent gravitation…

Reinforcement Learning

Inverse Resistive Force Theory (I-RFT): Learning granular properties through robot-terrain physical interactions

2026-03-08 · Shipeng Liu, Feng Xue, Yifeng Zhang, Tarunika Ponnusamy 외 arxiv

For robots to navigate safely and efficiently on soft, granular terrains, it is crucial to gather information about the terrain's mechanical properties, which directly affect locomotion performance. Recent research has d…

Gaussian Processes

Towards Terrain-Aware Safe Locomotion for Quadrupedal Robots Using Proprioceptive Sensing

2026-03-10 · Peiyu Yang, Jiatao Ding, Wei Pan, Claudio Semini 외 arxiv

Achieving safe quadrupedal locomotion in real-world environments has attracted much attention in recent years. When walking over uneven terrain, achieving reliable estimation and realising safety-critical control based o…

Safe Active Navigation and Exploration for Planetary Environments Using Proprioceptive Measurements

2025-10-21 · Matthew Jiang, Shipeng Liu, Feifei Qian arxiv

Legged robots can sense terrain through force interactions during locomotion, offering more reliable traversability estimates than remote sensing and serving as scouts for guiding wheeled rovers in challenging environmen…