Topology Optimization of Micro-robotic Appendages Combining Piezoelectric, Polymer, and Silicon Beams
Andrija Milojević, Vladimir Krokhmal, Bingbing Wu, Kenn R. Oldham
- Year
- 2019
- Citations
- 3
Abstract
A topology optimization approach is proposed for design of micro-robotic appendages containing active, passive compliant, and rigid beam elements. These elements represent materials and structures - thin-film piezoelectric actuators, parylene-C polymer microstructures, and silicon beams - that have recently been co-fabricated in prototype millimeter scale walking robots. Topology optimization is performed using design synthesis methods that prune an initial network of beams while converting passive compliant beams to active or rigid links using discrete variables. Sample optimization function is introduced for maximizing displacement in two directions subject to certain load bearing constraints. Controllability of multi-direction motion is also optimized through activation of separate piezoelectric elements. Sample design results generated by the proposed algorithm are presented.
Keywords
Related papers
Statistical Learning Theory
Yuhai Wu, Vladimir Vapnik
1999
Artificial intelligence: a modern approach
1995
Applied Nonlinear Control
Jean-Jacques Slotine, Weiping Li
1991
A new optimizer using particle swarm theory
R.C. Eberhart, James Kennedy
2002