论文标题
选择性自组装使用重新编程的磁像素
Selective Self-Assembly using Re-Programmable Magnetic Pixels
论文作者
论文摘要
本文介绍了一种生成高度选择性编码的方法,这些编码可以磁性地“编程”到物理模块上,以使其能够以所选的配置自组装。我们基于Hadamard矩阵生成这些编码,并展示如何设计模块的面孔,以使其最大程度地吸引他们的预期伴侣,同时对其他面孔保持最大不可知论。我们得出这些界限的保证,并通过实验来验证它们的吸引力和不可知论。使用其面部已被软磁性材料覆盖的立方模块,我们表明如何使用廉价的,具有平面面的被动模块可用于选择性地自组装成目标形状,而无需几何指南。我们表明,使用基于CNC的磁性绘图仪可以轻松地重新编程这些模块以重新编程,并证明水箱中8个立方体的自组装。
This paper introduces a method to generate highly selective encodings that can be magnetically "programmed" onto physical modules to enable them to self-assemble in chosen configurations. We generate these encodings based on Hadamard matrices, and show how to design the faces of modules to be maximally attractive to their intended mate, while remaining maximally agnostic to other faces. We derive guarantees on these bounds, and verify their attraction and agnosticism experimentally. Using cubic modules whose faces have been covered in soft magnetic material, we show how inexpensive, passive modules with planar faces can be used to selectively self-assemble into target shapes without geometric guides. We show that these modules can be easily re-programmed for new target shapes using a CNC-based magnetic plotter, and demonstrate self-assembly of 8 cubes in a water tank.