Comparison of genetic programming with conventional methods for fatigue life modeling of FRP composite materials
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- @Article{Vassilopoulos20081634,
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author = "Anastasios P. Vassilopoulos and
Efstratios F. Georgopoulos and Thomas Keller",
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title = "Comparison of genetic programming with conventional
methods for fatigue life modeling of {FRP} composite
materials",
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journal = "International Journal of Fatigue",
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volume = "30",
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number = "9",
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pages = "1634--1645",
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year = "2008",
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ISSN = "0142-1123",
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DOI = "doi:10.1016/j.ijfatigue.2007.11.007",
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URL = "http://www.sciencedirect.com/science/article/B6V35-4R6B2M8-1/2/1d030f0598bc4659ba08b55c82930264",
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keywords = "genetic algorithms, genetic programming, Fatigue, Life
prediction, S-N curve",
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abstract = "Genetic programming is used in this paper for modeling
the fatigue life of several fiber-reinforced composite
material systems. It is shown that if the genetic
programming tool is adequately trained, it can produce
theoretical predictions that compare favorably with
corresponding predictions by other, conventional
methods for the interpretation of fatigue data. For the
comparison of results, curves produced by the genetic
programming tool are plotted together with curves
produced by three other commonly used methods for the
analysis of composite material fatigue data: linear
regression, Whitney's Weibull statistics and
Sendeckyj's wear-out model. The modeling accuracy of
this computational technique, whose application for
this purpose is novel, is very high. The proposed
modeling technique presents certain advantages compared
to conventional methods. The new technique is a
stochastic process that leads straight to a multi-slope
S-N curve that follows the trend of the experimental
data, without the need for any assumptions.",
- }
Genetic Programming entries for
Anastasios P Vassilopoulos
Efstratios F Georgopoulos
Thomas Keller
Citations