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Optimization and demonstration of 3D self-assembly system of hierarchical modular space structure using electromagnet

机译:电磁式分层模块化空间结构3D自组装系统的优化与演示

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This research deals with hierarchical modular structure which is noted as the assembly method in view of the recent upsizing of space structures. The idea is dividing a large space structure into multiple modules and homogeneous automatic assembly functions are installed on each of a module. Hence the shape and function of the entire structure has diversity as they can be changed by the arrangement of modules, regardless of the size of the structure. The conventional researches of locomotion and docking / release mechanisms installed on each module and keeping such characteristics are limited to two-dimensional. In this research, we propose a mechanism using an electromagnet that can be assembled into any shape in three dimensions. The size and arrangement of the electromagnet are optimized to maximize its movement performance by using the Response Surface Method (RSM) for making response surface and applied downhill simplex method. On that basis, the demonstration experiment was actually carried out and the success rate was compared with the existing method to demonstrate the effectiveness of the proposed method.
机译:这项研究涉及分层的模块化结构,鉴于最近空间结构的扩大,该结构被称为组装方法。这个想法是将一个大型空间结构划分为多个模块,并且在每个模块上均安装了同类的自动组装功能。因此,整个结构的形状和功能具有多样性,因为无论模块的大小如何,都可以通过模块的布置来改变它们的形状和功能。安装在每个模块上并保持这种特性的运动和对接/释放机制的常规研究仅限于二维。在这项研究中,我们提出了一种使用电磁体的机制,该机制可以在三个维度上组装成任何形状。通过使用用于制作响应面的响应面方法(RSM)和应用的下坡单纯形法,对电磁体的大小和排列进行了优化,以最大程度地提高其运动性能。在此基础上,实际进行了演示实验,并将成功率与现有方法进行了比较,以证明所提方法的有效性。

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