A mechatronika társ-tudományai
Co-sciences of the Mechatronics
Keywords:
mechatronics, mechanical engineering, electrical engineering, informatics, /, mechatronika, gépészet, elektronika, szenzortechnika, aktuátortechnika, irányítástechnikaAbstract
The Mechatronics Subcommittee of the Mechanical Engineering Scientific Committee was established at the Hungarian Academy of Sciences. The subcommittee reviewed the opinions of the 9 Hungarian universities practicing mechatronics on how the composition of mechatronics’s co-disciplines has changed. Initially, mechatronics was considered as a combination of 3 co-disciplines, today this has increased to 6. The subcommittee of the Hungarian Academy of Sciences adopted a new logo: The presentation presents in detail the changed role of co-disciplinesKeywords: mechatronics, mechanical engineering, electronical engineering, informatics
Kivonat
A Magyar Tudományos Akadémián megalakult a Gépszerkezettani Tudományos Bizottság Mechatronikai albizottsága. Az albizottság áttekintette a 9 magyarországi – mechatronikát művelő egyetem véleményét arról, hogyan változott meg a mechatronika társ-tudományi összetétele. Kezdetben a mechatronikát 3 társ-tudomány ötvözetként tekintettük, ma ez 6-ra nőtt. Az MTA albizottsága új logót fogadott el: Az előadás részletesen bemutatja a társ-tudományok megváltozott szerepét
References
Horváth,I. (2025) Deriving manageable transdisciplinary research models for complicating problematics.Transdisciolinary Journal of Engineering &Science, Vol.17, pp.25-51.DOI: 10.22545/2025/00269
Berry, C., Gennert, M., & Reck, R. (2020). Practical skills for students in mechatronics and robotics education. In: Proceedings of the ASEE Annual Conference Exposition. 1-17. DOI: 10.18260/1-2—35066
Bradley D.A., & Dawson, D. (1991). Information based strategies in the design of mechatronic systems, Design Matters, 12–18. DOI: 10.1016/0142-694X(91)90004-G
Bradley, D., & Hehenberger, P. (2016). Mechatronic futures. In: Mechatronic Futures. Springer, Cham. DOI: 10.1007/978-3-319-32156-1_1.
Bradley, D., & Russell, D.W. (2010). Mechatronics in action. Case studies in mechatronics – Application and education, Springer-Verlag London Limited, London. DOI: 10.1007/978-1-84996-080-9
Bradley, D., Russell, D., Ferguson, I., Isaacs, J., MacLeod, A., & White, R. (2015). The Internet of Things – The future or the end of mechatronics. Mechatronics, 27, 57-74. DOI: 10.1016/j.mechatronics.2015.02.005
Braga, N.C. (2002). Robotics, mechatronics, and artificial intelligence: Experimental circuit blocks for designers. Newnes, Oxford and Boston. DOI: not available
Buur, J., & Andreasen, M.M. (1989). Design models in mechatronic product development. Design Studies, 10(3), 155-162. DOI: 10.1016/0142-694X(89)90033-1
Cai, W. (2022). Research on the Integration of Intelligent Technology and Mechatronics in Mechanical Manufacturing. Frontiers in Science and Technology, 2(9), 29-32. DOI: 10.54691/fse.v2i9.2230
Chavan, D.K., Tasgaonkar, G.S., & Deulgaonkar, V.R. (2011). Mechatronics - A boon for technological development. International Journal of Mechanical and Production Engineering Research and Development, 1(2), 66-75. DOI: not available
Chen, X. (2022). Application of intelligent control in mechatronics system. Engineering Advances, 2(2), 182-185. DOI: 10.26855/ea.2022.12.007