Research Of Bio-Inspired Compliant Legged Robot Designs
DOI:
https://doi.org/10.54097/9tnfed12Keywords:
Amplifiers; Optical Fiber; Bismuth-Doped.Abstract
With the rapid advancements in technology, particularly in material science and kinematics, bio-inspired compliant legged robots are garnering global attention for their superior efficiency and adaptability across diverse environments. Those robots have significant advantages over traditional counterparts that lack flexibility for real-world application. This burgeoning field of research is increasingly focused on the practical applications of bio-inspired robotics, drawing inspiration from a wide range of creatures, from mammals to arthropods, which serve as exemplary models for efficient locomotion. The unique locomotive strategies of these biological entities, characterized by their resilience, agility, and energy efficiency, are being meticulously studied and replicated in robotic designs. These robots, equipped with compliant mechanisms and advanced materials, promise to revolutionize the way this paper approach tasks in challenging environments, from disaster recovery operations to environmental monitoring. The emphasis on mimicking the intricate movements and physical adaptations of these creatures not only enhances the robots' operational capabilities but also opens new avenues for innovation in robotic mobility and interaction with complex terrains.
Downloads
References
Zhou Xiaodong, Bi Shusheng, et al. A survey of bio-inspired compliant legged robot designs. Bioinspir. Biomim., 2012, 7: 041001.
Hoover A. M., Burden S., Fu Xiao-Yu, Sastry S. Shankar, Fearing R. S., et al. Bio-inspired design and dynamic maneuverability of a minimally actuated six-legged robot. In Proceedings, 3rd IEEE RAS & EMBS International Conference on Biomedical Robotics and Biomechatronics, Tokyo, Japan, 2010: 869-876.
Scarfogliero Umberto, Stefanini Cesare, Dario Paolo, et al. The use of compliant joints and elastic energy storage in bio-inspired legged robots. Mechanism and Machine Theory, 2009, 44(3): 580-590.
Zhang Jun, et al. Crab-inspired compliant leg design method for adaptive locomotion of a multi-legged robot. Bioinspir. Biomim., 2022, 17: 025001.
Hoover A. M., Burden S., Fu Xiao-Yu, Sastry S. Shankar, Fearing R. S., et al. Bio-inspired design and dynamic maneuverability of a minimally actuated six-legged robot. In Proceedings, 3rd IEEE RAS & EMBS International Conference on Biomedical Robotics and Biomechatronics, 2010: 869-876.
Park H. S., Sitti M., et al. Compliant footpad design analysis for a bio-inspired quadruped amphibious robot. In Proceedings, IEEE/RSJ International Conference on Intelligent Robots and Systems, 2009: 645-651.
Zhang Jun, Song Guangming, Li Yuya, Qiao Guifang, Song Aiguo, Wang Aimin, et al. A bio-inspired jumping robot: Modeling, simulation, design, and experimental results. Mechatronics, 2013, 23(8): 1123-1140.
Ananthanarayanan Arvind, et al. Compliant footpad design analysis for a bio-inspired quadruped amphibious robot. Bioinspir. Biomim., 2012, 7: 046005.
Downloads
Published
Issue
Section
License
Copyright (c) 2024 Highlights in Science, Engineering and Technology

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.







