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受风散种子启发的三维电子微型飞行器。

Three-dimensional electronic microfliers inspired by wind-dispersed seeds.

机构信息

Department of Organic Materials and Fiber Engineering, Soongsil University, Seoul, Republic of Korea.

Department of Smart Wearable Engineering, Soongsil University, Seoul, Republic of Korea.

出版信息

Nature. 2021 Sep;597(7877):503-510. doi: 10.1038/s41586-021-03847-y. Epub 2021 Sep 22.

Abstract

Large, distributed collections of miniaturized, wireless electronic devices may form the basis of future systems for environmental monitoring, population surveillance, disease management and other applications that demand coverage over expansive spatial scales. Aerial schemes to distribute the components for such networks are required, and-inspired by wind-dispersed seeds-we examined passive structures designed for controlled, unpowered flight across natural environments or city settings. Techniques in mechanically guided assembly of three-dimensional (3D) mesostructures provide access to miniature, 3D fliers optimized for such purposes, in processes that align with the most sophisticated production techniques for electronic, optoelectronic, microfluidic and microelectromechanical technologies. Here we demonstrate a range of 3D macro-, meso- and microscale fliers produced in this manner, including those that incorporate active electronic and colorimetric payloads. Analytical, computational and experimental studies of the aerodynamics of high-performance structures of this type establish a set of fundamental considerations in bio-inspired design, with a focus on 3D fliers that exhibit controlled rotational kinematics and low terminal velocities. An approach that represents these complex 3D structures as discrete numbers of blades captures the essential physics in simple, analytical scaling forms, validated by computational and experimental results. Battery-free, wireless devices and colorimetric sensors for environmental measurements provide simple examples of a wide spectrum of applications of these unusual concepts.

摘要

大型分布式的微型无线电子设备集合,可能成为未来环境监测、人口监测、疾病管理和其他需要广泛空间覆盖的应用的系统基础。需要有空中方案来分配这些网络的组件,受风力分散种子的启发,我们研究了用于在自然环境或城市环境中进行受控、无动力飞行的被动结构。在机械引导三维(3D)介观结构组装方面的技术,为针对此类目的而优化的微型 3D 飞行器提供了途径,这些飞行器的制造过程与电子、光电、微流控和微机电技术的最复杂生产技术相吻合。在这里,我们展示了一系列以这种方式制造的 3D 宏观、介观和微观飞行器,包括那些集成了有源电子和比色有效载荷的飞行器。对这种高性能结构的空气动力学的分析、计算和实验研究,在仿生设计方面建立了一套基本的考虑因素,重点是具有受控旋转运动学和低终端速度的 3D 飞行器。将这些复杂的 3D 结构表示为离散数量的叶片的方法,以简单的、分析的比例形式捕获了基本的物理原理,通过计算和实验结果得到了验证。用于环境测量的无电池、无线设备和比色传感器,为这些不寻常概念的广泛应用提供了简单的示例。

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