Self-Organized Translational Wheeling Motion in Stochastic Self-Assembling Modules

Author:

Miyashita Shuhei1,Nakajima Kohei2,Nagy Zoltán3,Pfeifer Rolf2

Affiliation:

1. Massachusetts Institute of Technology

2. University of Zurich

3. ETH Zurich

Abstract

Self-organization is a phenomenon found in biomolecular self-assembly by which proteins are spontaneously driven to assemble and attain various functionalities. This study reports on self-organized behavior in which distributed centimeter-sized modules stochastically aggregate and exhibit a translational wheeling motion. The system consists of two types of centimeter-sized water-floating modules: a triangular-shaped module that is equipped with a vibration motor and a permanent magnet (termed the active module), which can quasi-randomly rove around; and circular modules that are equipped with permanent magnets (termed passive modules). In its quasi-random movement in water, the active module picks up passive modules through magnetic attraction. The contacts between the modules induce a torque transfer from the active module to the passive modules. This results in rotational motion of the passive modules. As a consequence of the shape difference between the triangular module and the circular module, the passive modules rotate like wheels, being kept on the same edges as the active module. The motion of the active module is examined, as well as the characteristics and behavior of the self-organization process.

Publisher

MIT Press - Journals

Subject

Artificial Intelligence,General Biochemistry, Genetics and Molecular Biology

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. The morphological paradigm in robotics;Studies in History and Philosophy of Science;2023-08

2. Self‐Organization of Remote Reservoirs: Transferring Computation to Spatially Distant Locations;Advanced Intelligent Systems;2021-12-03

3. Physical reservoir computing—an introductory perspective;Japanese Journal of Applied Physics;2020-05-15

4. Soft timer: Dynamic clock embedded in soft body;Robotic Systems and Autonomous Platforms;2019

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