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Allometric scaling of insects and animals for biomimetic robot design considerations

机译:仿生机器人设计考虑的昆虫和动物的异形缩放

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Recently, biomimetic robots have received great attention as an alternative to overcome the limit of conventional robots. However, there is no standardized methodology to design and determine the specifications of biomimetic robots. In this paper, the concept of allometric scaling and its application to biomimetic robot design considerations are discussed. Also, characteristics of motion data of small insects and animals, which are eight species of crawling and eight species of flying creatures, all with less than 400 g in weight, are investigated. These are used to compare with those of recently presented biomimetic robots as a function of the body mass in several categories, including the velocity, angular velocity, acceleration, stride frequency, and wing beat frequency. The results show that the characteristics of most of the small biomimetic robots approximately fit in the allometric scaling of insects and animals. However, it is found that some small robots have characteristics which are quite different to those predictable from the allometric scaling law. Learning from nature may be a solution to design and determine the specifications of biomimetic robots, and the allometric scaling can be the one of the methods that can help define the achievable performance envelope.
机译:近来,仿生机器人作为克服常规机器人的局限性的替代方案而受到了极大的关注。但是,没有设计和确定仿生机器人规格的标准化方法。在本文中,讨论了异形缩放的概念及其在仿生机器人设计中的应用。此外,还对重量小于400 g的8种爬行动物和8种飞行生物的小型昆虫和动物的运动数据进行了研究。这些用于与最近提出的仿生机器人的功能进行比较,这些功能是体重在多个类别中的函数,包括速度,角速度,加速度,步幅频率和机翼拍打频率。结果表明,大多数小型仿生机器人的特征大致适合昆虫和动物的异体缩放比例。但是,发现一些小型机器人的特性与从异形比例定律可预测的特性大不相同。从自然界学习可能是设计和确定仿生机器人规格的一种解决方案,而异速缩放则可能是可以帮助定义可达到的性能范围的方法之一。

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