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基于不同结构模型的仿蛙起跳性能仿真分析

Simulation Analysis of Frog-Inspired Take-Off Performance Based on Different Structural Models.

作者信息

Wang Shuqi, Fan Jizhuang, Liu Yubin

机构信息

State Key Laboratory of Robotics and System, Harbin Institute of Technology, Harbin 150001, China.

出版信息

Biomimetics (Basel). 2024 Mar 11;9(3):168. doi: 10.3390/biomimetics9030168.

Abstract

The frog-inspired jumping robot is an interesting topic in the field of biomechanics and bionics. However, due to the frog's explosive movement and large range of joint motion, it is very difficult to make their structure completely bionic. To obtain the optimal jumping motion model, the musculoskeletal structure, jumping movement mechanism, and characteristics of frogs are first systematically analyzed, and the corresponding structural and kinematic parameters are obtained. Based on biological characteristics, a model of the articular bone structure is created, which can fully describe the features of frog movement. According to the various factors affecting the frog's jumping movement, mass and constraints are added, and the complex biological joint structure is simplified into four different jumping structure models. The jumping ground reaction force, velocity, and displacement of the center of mass, joint torque, and other motion information of these four models are obtained through ADAMS simulation to reveal the jumping movement mechanism and the influencing factors of frogs. Finally, various motion features are analyzed and compared to determine the optimal structural model of the comprehensive index, which provides a theoretical basis for the design of the frog-inspired jumping robot.

摘要

仿蛙跳跃机器人是生物力学和仿生学领域一个有趣的课题。然而,由于青蛙的爆发性运动和较大的关节运动范围,要使其结构完全仿生非常困难。为了获得最优的跳跃运动模型,首先对青蛙的肌肉骨骼结构、跳跃运动机制和特性进行系统分析,并获取相应的结构和运动学参数。基于生物学特性,创建了一个关节骨骼结构模型,该模型能够充分描述青蛙运动的特征。根据影响青蛙跳跃运动的各种因素,添加质量和约束条件,将复杂的生物关节结构简化为四种不同的跳跃结构模型。通过ADAMS仿真获得这四种模型的跳跃地面反作用力、质心速度和位移、关节扭矩等运动信息,以揭示青蛙的跳跃运动机制和影响因素。最后,对各种运动特征进行分析和比较,确定综合指标最优的结构模型,为仿蛙跳跃机器人的设计提供理论依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbfa/10968074/db96ac2c6ac1/biomimetics-09-00168-g001.jpg

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