A Review Analysis of Design Models for Mechatronic Product Design Perspectives
Jean Bosco Samon1, Damasse Harold Fotsa Tchouazong2

1Jean Bosco SAMON*, Department of Mechanical, National School of Agro Industrial Sciences, University of Ngaoundere, Ngaoundere, Cameroon.
2Damasse Harold FOTSA TCHOUAZONG, Department of Mechanical, National School of Agro Industrial Sciences, University of Ngaoundere, Ngaoundere, Cameroon.
Manuscript received on January 14, 2022. | Revised Manuscript received on March 12, 2022. | Manuscript published on March 30, 2022.| PP: 71-78 | Retrieval Number: 100.1/ijitee.C97260111322 | DOI: 10.35940/ijitee.C9726.0311422
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Abstract: The design of a mechatronic system is considered according to the concurrent engineering approach within the framework of a development cycle, is a methodological approach to master the design of complex systems and products. Competition on product quality and performance has become the main factor that companies face in today’s market. These pressures are driving technological advances to provide systems with a constant increase in performance at reduced costs and in shorter delivery times. The performance includes better interoperability, improved reliability, good safety and smaller size that have determined the birth of mechatronic systems. Obtaining a product with these qualities in a reduced time would be beneficial for design companies if they follow an efficient design model appropriate for complex system. In this context, this paper conducts a discretized study on the main mechatronic design patterns in order to make their use understandable for the design of mechatronic products. Another essential aspect of the work lies on the comparison of the different existing design models analyzed on the basis of the multi-criteria analysis according to some fixed criteria in order to present a comparative study for choosing a better model for mechatronic product design perspectives. 
Keywords: Design Process Models, Complex System, Mechatronic
Scope of the Article: Software Engineering Techniques and Production Perspectives