KLEIYN : A Quadruped Robot with an Active Waist for Both Locomotion and Wall Climbing

Fuente: arXiv
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Autori principali: Yoneda, Keita, Kawaharazuka, Kento, Suzuki, Temma, Hattori, Takahiro, Okada, Kei
Natura: Preprint
Pubblicazione: 2025
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author Yoneda, Keita
Kawaharazuka, Kento
Suzuki, Temma
Hattori, Takahiro
Okada, Kei
author_facet Yoneda, Keita
Kawaharazuka, Kento
Suzuki, Temma
Hattori, Takahiro
Okada, Kei
contents In recent years, advancements in hardware have enabled quadruped robots to operate with high power and speed, while robust locomotion control using reinforcement learning (RL) has also been realized. As a result, expectations are rising for the automation of tasks such as material transport and exploration in unknown environments. However, autonomous locomotion in rough terrains with significant height variations requires vertical movement, and robots capable of performing such movements stably, along with their control methods, have not yet been fully established. In this study, we developed the quadruped robot KLEIYN, which features a waist joint, and aimed to expand quadruped locomotion by enabling chimney climbing through RL. To facilitate the learning of vertical motion, we introduced Contact-Guided Curriculum Learning (CGCL). As a result, KLEIYN successfully climbed walls ranging from 800 mm to 1000 mm in width at an average speed of 150 mm/s, 50 times faster than conventional robots. Furthermore, we demonstrated that the introduction of a waist joint improves climbing performance, particularly enhancing tracking ability on narrow walls.
format Preprint
id arxiv_https___arxiv_org_abs_2507_06562
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle KLEIYN : A Quadruped Robot with an Active Waist for Both Locomotion and Wall Climbing
Yoneda, Keita
Kawaharazuka, Kento
Suzuki, Temma
Hattori, Takahiro
Okada, Kei
Robotics
In recent years, advancements in hardware have enabled quadruped robots to operate with high power and speed, while robust locomotion control using reinforcement learning (RL) has also been realized. As a result, expectations are rising for the automation of tasks such as material transport and exploration in unknown environments. However, autonomous locomotion in rough terrains with significant height variations requires vertical movement, and robots capable of performing such movements stably, along with their control methods, have not yet been fully established. In this study, we developed the quadruped robot KLEIYN, which features a waist joint, and aimed to expand quadruped locomotion by enabling chimney climbing through RL. To facilitate the learning of vertical motion, we introduced Contact-Guided Curriculum Learning (CGCL). As a result, KLEIYN successfully climbed walls ranging from 800 mm to 1000 mm in width at an average speed of 150 mm/s, 50 times faster than conventional robots. Furthermore, we demonstrated that the introduction of a waist joint improves climbing performance, particularly enhancing tracking ability on narrow walls.
title KLEIYN : A Quadruped Robot with an Active Waist for Both Locomotion and Wall Climbing
topic Robotics
url https://arxiv.org/abs/2507.06562