An Intelligent Manufacturing System Based on WSN and RFID in Industrial Plants

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The intelligent manufacturing systems are in networked framework via a variety of networking communication systems integrating the heterogeneous collections of manufacturing worker, material, devices and real-time information. This paper presents a intelligent manufacturing system that is implemented by Radio Frequency Identification (RFID) and Wireless Sensor Network (WSN). The system monitors and controls with the clear objective of maximizing the Quality of Service (QoS) provided by the manufacturing resources and to analyze and make decision. This study describes the design and implementation of the system developed as well as performance testing and evaluation results, in terms of system transmission delay and energy consumption.

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1256-1260

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] D. Lucke, C. Constantinescu, and E. Westkmper, Smart factory - a step towards the next generation of manufacturing, in Proc. of Conference on Manufacturing Systems, May 2008, p.115–118.

DOI: 10.1007/978-1-84800-267-8_23

Google Scholar

[2] D. Zuehlke, SmartFactory from Vision to Reality in Factory Technologies, in Proc. of International Federation of Automatic Control World Congress, July 2008, p.82–89.

Google Scholar

[3] I.F. Akyildiz, W. Su*, Y. Sankarasubramaniam, E. Cayirci. Wireless sensor networks: a survey. Computer Networks, 38 (2002) 393–422.

DOI: 10.1016/s1389-1286(01)00302-4

Google Scholar

[4] Jennifer Yick, Biswanath Mukherjee, Dipak Ghosal. Wireless sensor network survey. Computer Networks, 52 (2008) 2292–2330.

DOI: 10.1016/j.comnet.2008.04.002

Google Scholar

[5] L. Q. Zhuang, D. H. Zhang and M. M. Wong (2010). Wireless Sensor Networks for Networked Manufacturing Systems, Factory Automation, Javier Silvestre-Blanes (Ed. ), ISBN: 978-953-307-024-7, InTech, pp.139-160.

Google Scholar

[6] http: /www. etelcn. com.

Google Scholar

[7] Chipcon. SmartRF® CC2430 PRELIMINARY (rev. 1. 01). (2005).

Google Scholar

[8] Lantronix. XPort User Guide. (2004).

Google Scholar

[9] A. Dunkels, O. Schmidt, T. Voigt, and M. Ali, Protothreads: Simplifying event-driven programming of memory-constrained embedded systems, in Proceedings of the 4th International Conference on Embedded Networked Sensor Systems, SenSys 2006, Boulder, Colorado, USA, (2006).

DOI: 10.1145/1182807.1182811

Google Scholar

[10] W. Lou , An efficient N - to - 1 multipath routing protocol in wireless sensor networks", Proceedings IEEE MASS, 05 , Washington, DC, Nov. 2005 , p.1–8.

Google Scholar

[11] http: /en. wikipedia. org.

Google Scholar

[12] L. Q. Zhuang, K. M. Goh, J. B. Zhang. The Wireless Sensor Networks for Factory Automation: Issues and Challenges, in Proceedings of the IEEE Conference on Emerging Technologies and Factory Automation, ETFA 2007, pp.141-148.

DOI: 10.1109/efta.2007.4416764

Google Scholar

[13] C. Salvatore, S. Bocchino, M. Petracca, R. Pelliccia, M. Ghibaudi, P. Pagano. WSN and RFID Integrated Solution for Advanced Safety Systems in Industrial Plants, in Proceedings of the 20th International Conference on Software, Telecommunications and Computer Networks (SoftCOM), 2012, pp.1-5.

DOI: 10.24138/jcomss.v9i1.162

Google Scholar

[14] Ali A. Abed, AbdulAdhem A. Ali, Nauman Aslam. Building an HMI and Demo Application of WSN-based Industrial Control Systems, in Proceedings of the 1st International Conference on Energy, Power and Control(EPC-IQ), Basrah, Iraq, 2010, p.302–306.

DOI: 10.37917/ijeee.7.2.4

Google Scholar