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Self-organizing Particle Systems

机译:自组织粒子系统

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Nanoparticles are getting more and more in the focus of the scientific community since the potential for the development of very small particles interacting with each other and completing medical and other tasks is getting bigger year by year. In this work we introduce a distributed local algorithm for arranging a set of nanoparticles on the discrete plane into specific geometric shapes, for instance a rectangle. The concept of a particle we use can be seen as a simple mobile robot with the following restrictions: it can only view the state of robots it is physically connected to, is anonymous, has only a constant size memory, can only move by using other particles as an anchor point on which it pulls itself alongside, and it operates in Look-Compute-Move cycles. The main result of this work is the presentation of a random distributed local algorithm which transforms any given connected set of particles into a particular geometric shape. As an example we provide a version of this algorithm for forming a rectangle with an arbitrary predefined aspect ratio. To the best of our knowledge this is the first work that considers arrangement problems for these types of robots.
机译:纳米粒子越来越受到科学界的关注,因为相互之间相互作用的小粒子发展以及完成医疗和其他任务的潜力逐年增长。在这项工作中,我们介绍了一种分布式局部算法,用于将离散平面上的一组纳米粒子排列为特定的几何形状,例如矩形。我们使用的粒子的概念可以看作是具有以下限制的简单移动机器人:它只能查看与其物理连接的机器人的状态,是匿名的,仅具有恒定大小的内存,只能通过使用其他对象来移动粒子作为锚点,将其拉到旁边,并以Look-Compute-Move周期运行。这项工作的主要结果是提出了一种随机分布式局部算法,该算法将任何给定的连接的粒子集转换为特定的几何形状。作为示例,我们提供了此算法的一种版本,用于形成具有任意预定义纵横比的矩形。据我们所知,这是考虑此类机器人的布置问题的第一项工作。

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