Equal work.
Bioinspir Biomim. 2017 Oct 16;12(6):064001. doi: 10.1088/1748-3190/aa7eb2.
We describe and explain new advancements in the design of the aerodynamic force platform, a novel instrument that can directly measure the aerodynamic forces generated by freely flying animals and robots. Such in vivo recordings are essential to better understand the precise aerodynamic function of flapping wings in nature, which can critically inform the design of new bioinspired robots. By designing the aerodynamic force platform to be stiff yet lightweight, the natural frequencies of all structural components can be made over five times greater than the frequencies of interest. The associated high-frequency noise can then be filtered out during post-processing to obtain accurate and precise force recordings. We illustrate these abilities by measuring the aerodynamic forces generated by a freely flying bird. The design principles can also be translated to other fluid media. This offers an opportunity to perform high-throughput, real-time, non-intrusive, and in vivo comparative biomechanical measurements of force generation by locomoting animals and robots. These recordings can include complex bimodal terrestrial, aquatic, and aerial behaviors, which will help advance the fields of experimental biology and bioinspired design.
我们描述并解释了空气动力平台设计的新进展,这是一种新颖的仪器,可以直接测量自由飞行的动物和机器人产生的空气动力。这种体内记录对于更好地理解自然界中扑翼的精确空气动力功能至关重要,这可以为新的仿生机器人的设计提供关键信息。通过设计空气动力平台使其既坚硬又轻巧,可以将所有结构组件的固有频率提高五倍以上。然后,可以在后期处理中过滤掉相关的高频噪声,以获得准确和精确的力记录。我们通过测量自由飞行的鸟类产生的空气动力来说明这些能力。设计原则也可以转化为其他流体介质。这为通过运动的动物和机器人进行高通量、实时、非侵入性和体内比较生物力学力产生测量提供了机会。这些记录可以包括复杂的双模态陆地、水生和空中行为,这将有助于推进实验生物学和仿生设计领域的发展。