Towards a concurrent engine system design methodology

Today's hyper-competitive automotive marketplace places very stringent quality and productivity demands on the industry's manufacturers and thus dictates an investment in new engineering processes and methods. In this paper, an engine design and development process based on Toyota's p...

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Published in2005 American Control Conference; Portland, OR; USA; 8-10 June 2005 pp. 3296 - 3302 vol. 5
Main Authors Ohata, A., Butts, K.R.
Format Conference Proceeding
LanguageEnglish
Published IEEE 2005
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Abstract Today's hyper-competitive automotive marketplace places very stringent quality and productivity demands on the industry's manufacturers and thus dictates an investment in new engineering processes and methods. In this paper, an engine design and development process based on Toyota's process improvement vision is presented. The process requires the development and deployment of a model-based concurrent engine system design methodology. Model based engineering has the potential to enable engineers to investigate design alternatives, system sensitivities, and component integration compatibility prior to building and testing physical prototypes. These benefits could be further magnified by engineering concurrency between the various teams involved in engine system development. Tools and methods needed to implement the vision are discussed.
AbstractList Today's hyper-competitive automotive marketplace places very stringent quality and productivity demands on the industry's manufacturers and thus dictates an investment in new engineering processes and methods. In this paper, an engine design and development process based on Toyota's process improvement vision will be presented. The process requires the development and deployment of a Modelbased Concurrent Engine System Design Methodology. Model based engineering has the potential to enable engineers to investigate design alternatives, system sensitivities, and component integration compatibility prior to building and testing physical prototypes. These benefits could be further magnified by engineering concurrency between the various teams involved in engine system development. Tools and methods needed to implement the vision are discussed.
Today's hyper-competitive automotive marketplace places very stringent quality and productivity demands on the industry's manufacturers and thus dictates an investment in new engineering processes and methods. In this paper, an engine design and development process based on Toyota's process improvement vision is presented. The process requires the development and deployment of a model-based concurrent engine system design methodology. Model based engineering has the potential to enable engineers to investigate design alternatives, system sensitivities, and component integration compatibility prior to building and testing physical prototypes. These benefits could be further magnified by engineering concurrency between the various teams involved in engine system development. Tools and methods needed to implement the vision are discussed.
Author Ohata, A.
Butts, K.R.
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SubjectTerms Automotive engineering
Buildings
Design engineering
Engines
Investments
Manufacturing industries
Manufacturing processes
Process design
Productivity
System testing
Title Towards a concurrent engine system design methodology
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