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Plants as Model in Biomimetics and Biorobotics: New Perspectives

机译:植物作为仿生和生物机器人模型的新视角

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摘要

Especially in robotics, rarely plants have been considered as a model of inspiration for designing and developing new technology. This is probably due to their radically different operational principles compared to animals and the difficulty to study their movements and features. Owing to the sessile nature of their lifestyle, plants have evolved the capability to respond to a wide range of signals and efficiently adapt to changing environmental conditions. Plants in fact are able to show considerable plasticity in their morphology and physiology in response to variability within their environment. This results in movements that are characterized by energy efficiency and high density. Plant materials are optimized to reduce energy consumption during motion and these capabilities offer a plethora of solutions in the artificial world, exploiting approaches that are muscle-free and thus not necessarily animal-like. Plant roots then are excellent natural diggers, and their characteristics such as adaptive growth, low energy consumption movements, and the capability of penetrating soil at any angle are interesting from an engineering perspective. A few examples are described to lay the perspectives of plants in the artificial world.
机译:尤其是在机器人技术领域,很少有人将植物视为设计和开发新技术的灵感模型。这可能是由于它们与动物相比存在根本不同的操作原理,并且难以研究其运动和特征。由于生活方式的固定性,植物已经发展了对各种信号做出响应并有效适应不断变化的环境条件的能力。实际上,植物能够响应其环境中的变化而在其形态和生理上显示出可塑性。这导致了以能量效率和高密度为特征的运动。对植物材料进行了优化,以减少运动过程中的能量消耗,这些功能利用无肌肉且因此不一定像动物的方法,为人造世界提供了多种解决方案。因此,植物根系是出色的天然挖掘物,从工程学角度来看,它们的特征(如适应性生长,低能耗运动以及以任何角度穿透土壤的能力)都很有趣。描述了一些示例,以奠定人造世界中植物的观点。

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