DEVELOPMENT OF THE INTEGRATED MODEL OF THE AUTOMOTIVE PRODUCT QUALITY ASSESSMENT

Hadi Amineh, Nataliya Kosach

Abstract


Issues on building an integrated model of the automotive product quality assessment are studied herein basing on widely applicable methods and models of the quality assessment. A conceptual model of the automotive product quality system meeting customer requirements has been developed. Typical characteristics of modern industrial production are an increase in the production dynamism that determines the product properties; a continuous increase in the volume of information required for decision-making, an increased role of knowledge and high technologies implementing absolutely new scientific and technical ideas. To solve the problem of increasing the automotive product quality, a conceptual structural and hierarchical model is offered to ensure its quality as a closed system with feedback between the regulatory, manufacturing, and information modules, responsible for formation of the product quality at all stages of its life cycle. The three module model of the system of the industrial product quality assurance is considered to be universal and to give the opportunity to explore processes of any complexity while solving theoretical and practical problems of the quality assessment and prediction for products for various purposes, including automotive.


Keywords


model development; automotive product quality; technical control; automotive products; customer requirements; product quality improvement; high-quality products

Full Text:

PDF

References


Zhou, H., Qiu, Y. (2015). A simple mathematical model of a vehicle with seat and occupant for studying the effect of vehicle dynamic parameters on ride comfort. 50th UK Conference on Human Responses to Vibration. Available at: https://pdfs.semanticscholar.org/eb75/506ba9c84ca2a2bbf45572d7879da44b2204.pdf

Ebert, C., Jones, C. (2009). Embedded Software: Facts, Figures, and Future. Computer, 42 (4), 42–52. doi:10.1109/mc.2009.118

Jones, E. L. (2001). Integrating testing into the curriculum – arsenic in small doses. ACM SIGCSE Bulletin, 33 (1), 337–341. doi: 10.1145/366413.364617

Broy, M. (2006). Challenges in automotive software engineering. Proceeding of the 28th International Conference on Software Engineering, 33–42. doi: 10.1145/1134285.1134292

Furst, S. (2010). Challenges in the design of automotive software. 2010 Design, Automation & Test in Europe Conference & Exhibition, 256–258. doi: 10.1109/date.2010.5457201

Eklund, U., Gustavsson, H. (2013). Architecting automotive product lines: Industrial practice. Science of Computer Programming, 78 (12), 2347–2359. doi: 10.1016/j.scico.2012.06.008

Mellegard, N. (2013). Improving Defect Management in Automotive Software Development. Chalmers University of Technology, 247.

Grady, R. B. (1996). Software failure analysis for high-return process improvement decisions. Hewlett Packard Journal, 47, 15–24.

Yevdokimova, L. I. (2015). Complex assessment of dynamics of an enterprise’s operation effectiveness as a tool for the analytical activity activation at an industrial enterprise. Moscow: Academic International Institute, 150.

Zakharov, M. G. (1999). System quality is the enterprise of self-preservation tool in times of crisis. Standards and quality, 2, 33–34.

Zekunov, A. G., Ivanov, V. N., Mishin, V. M., Pazyuk, Yu. V., Vlasova, T. I. (2015). Quality management. Moscow: Yurait Publishing house, 475.

Medunetsky, V. M. (2013). Fundamentals of quality assurance and certification of industrial products. Saint Petersburg: ITMO, 61.

Huang, E. (2010). Quality Products and Methods of their Evaluation in an Industrial Enterprise. Problems of modern science and practice, 10-12 (31), 248–264.

Hadi, A. (2016). The product quality: characteristics, essence, evolution of approaches. Economy. Management. Modern problems and prospects of development, 4, 64–72.

Kosach, N. I., Siroklyn, V. P., Hadi, A. (2016). The quality of the system engineering company Iran Khodro management. All-Ukraine Scientific and Technic Conference of Young Scientists in Metrology, 1-5, 82–96.

Hadi, A., Kosach, N. (2016). Assessment of Consumers' Satisfaction with the Automotive Product Quality. International Journal of Environmental & Science Education, 11 (16), 8726–8739.

Stroganov, V. I. (2012). Results and prospects of development of electro mobiles and hybrid vehicles. Electronics and electrical transport, 2.

Vitovtova, A. A. (2016). Analysis and evaluation of quality competitiveness. Kuban State University, 12.

Leonov, O. A., Temasova, G. N. (2015). Economics of quality. Saarbruken, 305.

Leonov, O. A., Temasova, G. N., Vergazova, Y. G. (2015). Quality management. Moscow: Publishing house RGAU – MSHA, 180.




DOI: http://dx.doi.org/10.21303/2461-4262.2017.00269

Refbacks

  • There are currently no refbacks.




Copyright (c) 2017 Hadi Amineh, Nataliya Kosach

Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.

ISSN 2461-4262 (Online), ISSN 2461-4254 (Print)