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Design and Analysis of a Multi-Legged Robot with Pitch Adjustive Units

Qiang Ruan et al · KeAi Communications Co., Ltd · 2021

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Abstract The paper proposes a novel multi-legged robot with pitch adjustive units aiming at obstacle surmounting. With only 6 degrees of freedom, the robot with 16 mechanical legs walks steadily and surmounts the obstacles on the complex terrain. The leg unit with adjustive pitch provides a large workspace and empowers the legs to climb up obstacles in large sizes, which enhances the obstacle surmounting capability. The pitch adjustment in leg unit requires as few independent adjusting actuators as possible. Based on the kinematic analysis of the mechanical leg, the biped and quadruped leg units with adjustive pitch are analyzed and compared. The configuration of the robot is designed to obtain a compact structure and pragmatic performance. The uncertainty of the obstacle size and position in the surmounting process is taken into consideration and the parameters of the adjustments and the feasible strategies for obstacle surmounting are presented. Then the 3D virtual model and the robot prototype are built and the multi-body dynamic simulations and prototype experiments are carried out. The results from the simulations and the experiments show that the robot possesses good obstacle surmounting capabilities.

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APA 7

al, Q. R. E. (2021). Design and Analysis of a Multi-Legged Robot with Pitch Adjustive Units. https://doi.org/10.1186/s10033-021-00578-z

MLA

al, Qiang Ruan et. "Design and Analysis of a Multi-Legged Robot with Pitch Adjustive Units." 2021. https://doi.org/10.1186/s10033-021-00578-z.

Chicago

al, Qiang Ruan et. 2021. "Design and Analysis of a Multi-Legged Robot with Pitch Adjustive Units.". https://doi.org/10.1186/s10033-021-00578-z.

Harvard

al, Q. R. E. 2021, Design and Analysis of a Multi-Legged Robot with Pitch Adjustive Units, KeAi Communications Co, Ltd, available at: https://doi.org/10.1186/s10033-021-00578-z [Accessed 28 Jun. 2026].

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Título
Design and Analysis of a Multi-Legged Robot with Pitch Adjustive Units
Autor / colaboradores
Qiang Ruan et al
Editorial
KeAi Communications Co., Ltd
Año de publicación
2021
ISSN
1000-9345
ISSN
1000-9345
Idioma
eng

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