Publication result detail

Optimization of valve manifold timing sequence using differential evolution algorithm

PANÁČEK, T.; KLAPKA, M.; NĚMEC, Z.

Original Title

Optimization of valve manifold timing sequence using differential evolution algorithm

English Title

Optimization of valve manifold timing sequence using differential evolution algorithm

Type

Paper in proceedings (conference paper)

Original Abstract

The present article deals with time optimization of the valve manifold by differential evolution algorithm. The adjustable valve manifold is a part of the experimental energy regeneration circuit for heavy vehicles with hydrostatic drive. The optimization process is based on a numerical model of the experimental rig, which is a scaled model of the real hydrostatic drive of the heavy vehicle.

English abstract

The present article deals with time optimization of the valve manifold by differential evolution algorithm. The adjustable valve manifold is a part of the experimental energy regeneration circuit for heavy vehicles with hydrostatic drive. The optimization process is based on a numerical model of the experimental rig, which is a scaled model of the real hydrostatic drive of the heavy vehicle.

Keywords

Differential evolution algorithm, optimization, energy regeneration, efficiency

Key words in English

Differential evolution algorithm, optimization, energy regeneration, efficiency

Authors

PANÁČEK, T.; KLAPKA, M.; NĚMEC, Z.

Released

12.05.2014

Publisher

Institute of Termomechanics, Academy of Sciences of the Czech Republic

Location

Prague

ISBN

978-80-214-4871-1

Book

Engineering mechanics 2014, Book of full texts

Edition

1

Pages from

468

Pages to

471

Pages count

4

BibTex

@inproceedings{BUT107769,
  author="Tomáš {Panáček} and Milan {Klapka} and Zdeněk {Němec}",
  title="Optimization of valve manifold timing sequence using differential evolution algorithm",
  booktitle="Engineering mechanics 2014, Book of full texts",
  year="2014",
  series="1",
  number="1",
  pages="468--471",
  publisher="Institute of Termomechanics, Academy of Sciences of the Czech Republic",
  address="Prague",
  isbn="978-80-214-4871-1"
}