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Two-DoF turret mechanism for a rope-driven wheel-legged climbing robot on a 3D façade
- Ahn, Sahoon;
- Hyun, DongGuen;
- Moon, Yecheol;
- Lee, Jongmyeong;
- Kim, HwaSoo;
- ... Seo, TaeWon
WEB OF SCIENCE
4SCOPUS
3초록
Current climbing robots for building cleaning and inspection are typically designed for vertical walls. In this study, a novel robot platform is developed to navigate complex 3D building façades with obstacles and slopes. This platform uses an Ascender, equipped with a winch for climbing, and a wheel-legged mechanism for versatile movement. A linear sliding turret (LST) mechanism is introduced to address challenges encountered with Ascender and wheel-legged mechanisms on three-dimensional façades. By controlling the robot's center of gravity, the LST mechanism distributes ground reaction forces (GRFs) across four legs, minimizing damage to the building. It also controls the zero-moment point (ZMP) and tension to stably overcome obstacles. Experimental validation confirmed the robot's stability on various slopes, obstacle negotiation, and balanced GRF distribution. This rope-driven, wheel-legged climbing robot with an LST mechanism demonstrates strong potential for overcoming challenges in diverse, sloped environments.
키워드
- 제목
- Two-DoF turret mechanism for a rope-driven wheel-legged climbing robot on a 3D façade
- 저자
- Ahn, Sahoon; Hyun, DongGuen; Moon, Yecheol; Lee, Jongmyeong; Kim, HwaSoo; Seo, TaeWon
- 발행일
- 2025-01
- 유형
- Article
- 권
- 242
- 페이지
- 1 ~ 11