Multidisciplinary design optimization using knowledge management applied to an electronic throttle
ISSN: 0332-1649
Article publication date: 31 January 2020
Issue publication date: 20 May 2020
Abstract
Purpose
Within the current industrial context, companies aim to decrease the design process time and cost. The multidisciplinary design optimization (MDO) appears as a solution to accelerate the process and support designers in different stages of the design cycle. However, this relatively new concept needs to be integrated efficiently in the industrial environment and issues related to collaboration, data management, traceability and reuse need to be overcome.
Design/methodology/approach
The aim of this work is to efficiently integrate the MDO in the industrial design cycle by means of knowledge management (KM) techniques. To take into account the industrial environment, the methodology was applied in a collaborative software.
Findings
An example of collaborative design and optimization of an electronic throttle body (ETB) controller is presented with industrial requirements. The design problem was solved successfully and demonstrates the efficiency of the methodology in collaborative environments.
Originality/value
The contributions of this work lie in the structuration of the knowledge to support MDO and the definition of a general way to connect the existent MDO tools to the knowledge base. This methodology will enable to freely link different steps of the design process and reduce considerably the setting time of MDO in industries.
Keywords
Citation
Mcharek, M., Azib, T., Hammadi, M., Larouci, C. and Choley, J.-Y. (2020), "Multidisciplinary design optimization using knowledge management applied to an electronic throttle", COMPEL - The international journal for computation and mathematics in electrical and electronic engineering, Vol. 39 No. 2, pp. 353-362. https://doi.org/10.1108/COMPEL-06-2019-0237
Publisher
:Emerald Publishing Limited
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