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首页> 外文期刊>Frontiers in Robotics and AI >Design of Introspective Circuits for Analysis of Cell-Level Dis-orientation in Self-Assembled Cellular Systems
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Design of Introspective Circuits for Analysis of Cell-Level Dis-orientation in Self-Assembled Cellular Systems

机译:自组装细胞系统中细胞水平方向失调分析的自省电路设计

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This paper discusses a novel approach to managing complexity in a large self-assembled system, by employing the self-assembling components themselves to address the complexity. Challenges are discussed, including the question of how to deal with elements that are assembled in different orientations from each other, and a solution based on the idea of introspective circuits is described. A methodology for determining a single cell’s orientation from an adjacent cell is given. An algorithm is then described for using such re-oriented edge cells to determine orientation of more-interior cells, thus allowing re-orientation of an entire 2D region of cells. Test procedures are described, and results are presented to show better-than-linear time performance (O(sqrt(n))). The significance of this work is discussed, not only in terms of managing arrays of dis-oriented cells, but more importantly as an example of the usefulness of local, distributed self-configuration to create and use introspective circuitry. Finally, future work is discussed, including extension to 3D collections of cells.
机译:本文讨论了一种通过使用自组装组件本身来解决复杂性的方法来管理大型自组装系统中的复杂性。讨论了挑战,包括如何处理以不同方向组装的元件的问题,并描述了基于自省电路思想的解决方案。给出了一种从相邻单元格确定单个单元格方向的方法。然后描述了一种算法,该算法使用这种重新定向的边缘单元来确定更内部的单元的定向,从而允许对整个单元的2D区域进行重新定向。描述了测试程序,并给出了显示结果优于线性时间的性能(O(sqrt(n)))。讨论了这项工作的意义,不仅是在管理迷失方向的单元阵列方面,而且更重要的是,它是本地,分布式自配置对创建和使用自省电路有用性的一个示例。最后,讨论了未来的工作,包括扩展到单元的3D集合。

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