Document Type : Review Article

Authors

1 Department of Electrical Engineering, Majlesi Branch, Islamic Azad University, Isfahan, Iran.; Center for Advanced Engineering Research, Majlesi Branch, Islamic Azad University, Isfahan, Iran.

2 Department of Mechanical Engineering, Majlesi Branch, Islamic Azad University, Isfahan, Iran.; Center for Advanced Engineering Research, Majlesi Branch, Islamic Azad University, Isfahan, Iran.

3 Department of Electrical Engineering, Majlesi Branch, Islamic Azad University, Isfahan, Iran.; Center for Advanced Engineering Research, Majlesi Branch, Islamic Azad University, Isfahan, Iran.; Harvard-MIT Division of Health Sciences and Technology, Harvard Medical School, Cambridge, MA, USA

Abstract

One of the devices that are widely used in industries in recent years is computer numerical control (CNC) machinery. Many CNC controllers has been designed and employed in CNC machinery during recent years but all of them has some limitations and disadvantages due to their design and used methods. The purpose of this research is designing and modifying a novel multi axis automatic controller (MAAC) for using in CNC machinery which has more advantages compared with used controllers and has an optimized performance. By using MAAC in CNC machinery we can achieve more machining speed and repeatability in a shorter time in implementation of industrial process.

Keywords

[1] Suh, Seong-kyoonkang, Dae-Hyuk Chung, Ian Stroud, Suk-Hwan. Theory and Design of CNC systems. Springer Series in Advanced Manufacturing. ISSN 1860-5168. 2008.
[2] Patrick Hood-Daniel, James Floyd Kelly. Build your own CNC machine. Apress. ISBN: 978-1-4302-2489-1. 2009.
[3] Peter Smid. CNC Programming Handbook. Industrial Press Inc. ISBN: 0-8311-3158-6. 2003.
[4] Computer Numerical Control. IC Learning Series. Copyright reserved by Industrial Centre, The Hong Kong Polytechnic University. 2012.
[5] Steve Krar, Arthur Gill. Computer Numerical Control Programming Basics. Industrial Press Edition. ISBN: 0-8311-3131-4. 1999.
[6] R. E. Breaz, O. C. Bologa, V. S. Oleksik, G. S. Racz. Computer Simulation for the Study of CNC Feed Drives Dynamic Behavior and Accuracy. EUROCON the International Conference on Computer as a Tool. 2009.
[7] K. Ekkachai, U. Komin, W. Chaopramualkul, A. Tantaworrasilp, P. Kwansud, P. Seekhao, T. Leelasawassuk, K. Tanta-Ngai, K. Tungpimolrut. Design and development of an open architecture CNC controller for milling machine retrofitting. ICROS-SICE International Joint Conference. 2009.
[8] J. Dong, X. Yang, Q. Liu, Z. Wang, T. Wang. Design and implementation of CNC controllers using reconfigurable hardware. IEEE International Conference on Control and Automation. 2009.
[9] P. A. S. da Rocha Junior, R. Diogne de Silva e Souza, M. E. de Lima Tostes. Prototype CNC machine design. 9th IEEE/IAS International Conference on Industry Applications. 2010.
[10] X. Lu, D. Yu, Y. Hu, X. Jia, Q. Feng, T. Sorin, B. Cristina, B. Octavian-Constantin. Design and Emplementation of High-performance Embedded Numerical Control System. IEEE 12th International Conference on Computer and Information Technology. 2012.
[11] P. Sofer, J. Skuta, J. Gebauer. Drilling of circuit boards using CNC controlled by programable logic controller. 13th IEEE International Carpathian Control Conference. 2012.
[12] Lie Tang, R. G. Landers. Predictive Contour Control with Adaptive Feed Rate. IEEE/ASME Transactions on Mechatronics. VOL. 17, NO. 4, 2012. ISSN: 1083-4435.