Coevolution of the Features of the Dynamics of the Accelerator Pedal and Hyperparameters of the Classifier for Emergency Braking Detection
Created by W.Langdon from
gp-bibliography.bib Revision:1.8051
- @Article{Podusenko:2018:Actuators,
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author = "Albert Podusenko and Vsevolod Nikulin and
Ivan Tanev and Katsunori Shimohara",
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title = "Coevolution of the Features of the Dynamics of the
Accelerator Pedal and Hyperparameters of the Classifier
for Emergency Braking Detection",
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journal = "Actuators",
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year = "2018",
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volume = "7",
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number = "3",
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pages = "39",
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month = sep,
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note = "Special Issue Novel Braking Control Systems",
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keywords = "genetic algorithms, genetic programming, emergency
braking system, cooperative coevolution, evolutionary
computation, driving assisting agent, extreme gradient
boosting",
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ISSN = "2076-0825",
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URL = "http://www.mdpi.com/journal/actuators",
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URL = "http://www.mdpi.com/2076-0825/7/3",
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URL = "http://www.mdpi.com/2076-0825/7/3/39/pdf",
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DOI = "doi:10.3390/act7030039",
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size = "18 pages",
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abstract = "We investigate the feasibility of inferring the
intention of the human driver of road motor vehicles to
apply emergency braking solely by analysing the
dynamics of lifting the accelerator pedal. Focusing on
building the system that reliably classifies the
emergency braking situations, we employed evolutionary
algorithms (EA) to coevolve both (i) the set of
features that optimally characterize the movement of
accelerator pedal and (ii) the values of the
hyperparameters of the classifier. The experimental
results demonstrate the superiority of the
coevolutionary approach over the analogical approaches
that rely on an a priori defined set of features and
values of hyperparameters. By using simultaneous
evolution of both features and hyperparameters, the
learned classifier inferred the emergency braking
situations in previously unforeseen dynamics of the
accelerator pedal with an accuracy of about 95percent.
We consider the obtained results as a step towards the
development of a brake-assisting system, which would
perceive the dynamics of the accelerator pedal in a
real-time and in case of a foreseen emergency braking
situation, would apply the brakes automatically well
before the human driver would have been able to apply
them.",
-
notes = "MDPI",
- }
Genetic Programming entries for
Albert Podusenko
Vsevolod Nikulin
Ivan T Tanev
Katsunori Shimohara
Citations