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使用新型张拉整体结构进行毛毛虫爬行建模。

Modeling of caterpillar crawl using novel tensegrity structures.

机构信息

School of Mechanical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv, Israel.

出版信息

Bioinspir Biomim. 2012 Dec;7(4):046006. doi: 10.1088/1748-3182/7/4/046006. Epub 2012 Aug 8.

Abstract

Caterpillars are soft-bodied animals. They have a relatively simple nervous system, and yet are capable of exhibiting complex movement. This paper presents a 2D caterpillar simulation which mimics caterpillar locomotion using Assur tensegrity structures. Tensegrity structures are structures composed of a set of elements always under compression and a set of elements always under tension. Assur tensegrities are a novel sub-group of tensegrity structures. In the model, each caterpillar segment is represented by a 2D Assur tensegrity structure called a triad. The mechanical structure and the control scheme of the model are inspired by the biological caterpillar. The unique engineering properties of Assur tensegrity structures, together with the suggested control scheme, provide the model with a controllable degree of softness-each segment can be either soft or rigid. The model exhibits several characteristics which are analogous to those of the biological caterpillar. One such characteristic is that the internal pressure of the caterpillar is not a function of its size. During growth, body mass is increased 10 000-fold, while internal pressure remains constant. In the same way, the model is able to maintain near constant internal forces regardless of size. The research also suggests that caterpillars do not invest considerably more energy while crawling than while resting.

摘要

毛毛虫是一种软体动物。它们的神经系统相对简单,但却能够表现出复杂的运动。本文提出了一种 2D 毛毛虫模拟,使用 Assur 张拉整体结构来模拟毛毛虫的运动。张拉整体结构是由一组始终处于压缩状态的元素和一组始终处于拉伸状态的元素组成的结构。Assur 张拉整体结构是张拉整体结构的一个新的子群。在模型中,每个毛毛虫节段由一个称为三联体的 2D Assur 张拉整体结构表示。模型的机械结构和控制方案受到生物毛毛虫的启发。Assur 张拉整体结构的独特工程特性,以及所提出的控制方案,为模型提供了一定程度的可控柔软性——每个节段可以是柔软的或刚性的。该模型表现出了一些与生物毛毛虫类似的特征。其中一个特征是,毛毛虫的内部压力不是其大小的函数。在生长过程中,体重增加了 10000 倍,而内部压力保持不变。同样,该模型能够在不考虑大小的情况下保持近恒定的内力。研究还表明,毛毛虫在爬行时并不比休息时消耗更多的能量。

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