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Evaluation of regular planar meshes for Modular Active Cell Robots (MACROs)

Ahsan I. Nawroj, Aaron M. Dollar

Year
2017
Citations
4

Abstract

In this paper we investigate a series of candidate regular planar mesh geometries in terms of their suitability for utilization as mesh primitives for constructing compliant robotic structures. In prior work, we established a framework of compliant, articulate robotic meshes, termed Modular Active Cell Robots (MACROs), created from contractile Shape Memory Alloy linear-actuators (Active Cells). In this paper, we examine how to utilize these MACROs and other mesh-like robots in large regular or semi-regular topologies. We evaluate axial strains and stiffness characteristics for a range of MACRO meshes created using different mesh-primitives, which are drawn from known regular space-filling lattice geometries. We then describe the implications of these results on the design of MACRO structures, including the tradeoffs between different primitives for various structural performance properties.

Keywords

Polygon meshMacroModular designComputer scienceActuatorPlanarRobotNetwork topologyTopology (electrical circuits)Lattice (music)

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