Genetic Programming for Fiber-Threading for Fiber-Reinforced Plastics
Created by W.Langdon from
gp-bibliography.bib Revision:1.8051
- @InProceedings{Wilfert:2021:ETFA,
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author = "Jonas Wilfert and Simon Stieber and
Frederik Wilhelm and Wolfgang Reif",
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title = "Genetic Programming for Fiber-Threading for
Fiber-Reinforced Plastics",
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booktitle = "2021 26th IEEE International Conference on Emerging
Technologies and Factory Automation (ETFA)",
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year = "2021",
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abstract = "Setting up fiber-threading for a pultrusion line is
tedious, error prone and takes a long time. Between 100
and 1000 fibers have to be arranged into a
two-dimensional shape, which have to be threaded
between several support plates without causing
crossovers. When manually planning this process based
on intuition, it is hard to keep track of the
complexity. This slows the process down to where it can
take several hours or several days, and shortening this
duration reduces the cost considerably. As planning the
setup takes up a large chunk of time, we are proposing
a simulation and an algorithm to automatically
calculate how the fiber bundles need to be threaded
from the creels through the support plates to result in
the desired shape. Using a three-dimensional simulation
for collision detection in conjunction with a genetic
algorithm, we are able to shorten the planning of the
fibers to around 10 minutes on a modern 8-core personal
computer. Based on this data, further work can be done
to further improve, visualize or permanently store the
data in a digitized company.",
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keywords = "genetic algorithms, genetic programming",
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DOI = "doi:10.1109/ETFA45728.2021.9613726",
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month = sep,
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notes = "Also known as \cite{9613726}",
- }
Genetic Programming entries for
Jonas Wilfert
Simon Stieber
Frederik Wilhelm
Wolfgang Reif
Citations