Energy efficiency and flow optimisation based on a natural role model

Penguins are fascinating animals. To enable them to survive in the cold Antarctic waters, they not only have excellent insulation but also reduce their energy consumption through the streamlined shape of their bodies. This is yet another way in which nature shows how a minimum of energy input can achieve a maximum of performance. Reason enough for our Bionic Learning Network to investigate the efficient streamlined shape of birds with the AquaPenguins and to apply it to technology.

To communicate with their environment and the other bionic penguins, the AquaPenguins are equipped with a special 3D sonar system. In a similar way to dolphins, they use broadband ultrasound signals to determine their position in a space, continuously measure the distances to the boundaries of the body of water, avoid collisions and navigate independently. The penguins can use a separate pressure sensor for depth measurement in open water.

Cutting-edge technology for the automation of tomorrow

The hull, which can move in any direction, is a brand new innovation in the field of robotics. Its design consists of a flexible Fin Ray® structure inspired by the tail fin of a fish. When pressure is applied to it from the side, it does not bend away but instead curves around the pressure point. For the AquaPenguins, the bionic Fin Ray® structure has now been extended to three-dimensional space for the first time. The hull design of the penguins could be used in automation as a flexible parallel kinematic system arrangement and thus open up new application fields in handling technology.


此项目是仿生学习网络的组成部分 - 而后者,是自然与科技结合的卓越平台。


我们携手研究机构、高校与合作伙伴,共同探索生物学原理,为自动化技术及技术培训等核心业务开发创新理念和解决方案。 如欲深入了解仿生学习网络,或者探索与 Festo 有关的更多精彩主题,欢迎访问我们的博客。

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