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Byoungkwon An

Possible papers associated with this exact author name in Arrow. This page groups case-insensitive exact name matches and is not a full identity disambiguation profile.

3 papers
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3

ICRA Conference 2014 Conference Paper

An end-to-end approach to making self-folded 3D surface shapes by uniform heating

  • Byoungkwon An
  • Shuhei Miyashita
  • Michael T. Tolley
  • Daniel M. Aukes
  • Laura Meeker
  • Erik D. Demaine
  • Martin L. Demaine
  • Robert J. Wood

This paper presents an end-to-end approach for creating 3D shapes by self-folding planar sheets activated by uniform heating. These shapes can be used as the mechanical bodies of robots. The input to this process is a 3D geometry (e. g. an OBJ file). The output is a physical object with the specified geometry. We describe an algorithm pipeline that (1) identifies the overall geometry of the input, (2) computes a crease pattern that causes the sheet to self-fold into the desired 3D geometry when activated by uniform heating, (3) automatically generates the design of a 2D sheet with the desired pattern and (4) automatically generates the design files required to fabricate the 2D structure. We demonstrate these algorithms by applying them to complex 3D shapes. We demonstrate the fabrication of a self-folding object with over 50 faces from automatically generated design files.

ICRA Conference 2012 Conference Paper

Programming and controlling self-folding robots

  • Byoungkwon An
  • Daniela Rus

This paper describes a robot in the form of a self-folding sheet that is capable of origami-style autonomous folding. We describe the hardware device we designed and fabricated. The device is a sheet with a box-pleated pattern and an integrated electronic substrate and actuators. The sheet is programmed and controlled to achieve different shapes using an idea called sticker programming. We describe the sticker controller and its instantiation. We also describe the algorithms for programming and controlling a given sheet to self-fold into a desired shape. Finally we present experiments with a 4×4 hardware device and an 8×8 hardware device.

IROS Conference 2010 Conference Paper

Making shapes from modules by magnification

  • Byoungkwon An
  • Daniela Rus

We present a distributed algorithm for creating a modular shape by magnification. The input to the algorithm is presented with a small scale version of the desired shape and a magnification factor m. The output of the system is the object that corresponds to the m-fold magnification of the input shape. We describe and analyze a distributed algorithm for this capability and present simulation results. Making shapes by magnification can be viewed as a programming interface for creating objects by programming matter.

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