scholarly journals Validation of modified radio-frequency identification tag firmware, using an equine population case study

PLoS ONE ◽  
2019 ◽  
Vol 14 (1) ◽  
pp. e0210148 ◽  
Author(s):  
Rachael M. Milwid ◽  
Terri L. O’Sullivan ◽  
Zvonimir Poljak ◽  
Marek Laskowski ◽  
Amy L. Greer
Author(s):  
Chandana Unnithan ◽  
Arthur Tatnall

Australian hospitals had begun exploring Radio Frequency Identification, a wireless automatic identification and data capture technology for improving the quality of their services towards the end of 2000s. After many an unsuccessful pilots, a breakthrough for large hospitals came in 2010, with a key learning rendered by a large regional hospital that not only experimented with the technology, but also have made it all pervasive in their operations. In this chapter, we present the case study, through an innovation translation perspective, focusing on the socio-technical factors captured through elements of Actor-Network Theory.


2008 ◽  
Vol 07 (02) ◽  
pp. 271-274
Author(s):  
HUA-LIN ZHENG ◽  
YUE-PAI WANG ◽  
XI-YUAN WAN

RFID (Radio Frequency Identification) technology is put forward as a new data collection method to bridge the gap between information flow and material flow. The data achieved by RFID can be shared by both MES and ERP simultaneously. A simulated WIP (Work In Process) machining process application case study is used in the paper to show how the synchronization is realized.


2020 ◽  
Author(s):  
Mashum Billal ◽  
Miguel Baritto ◽  
S. M. Muntasir Nasim ◽  
Rumana Afroz Sultana ◽  
Mohammad Arani ◽  
...  

The main purpose of this work is to report an implemented novel methodology to support Small and Medium Enterprises (SMEs) managers in better understanding the specific requirements for the implementation of Industry 4.0 solutions and the derived benefits within their firms. The methodology was implemented in a pressurized cylinder manufacturing company as a case study. The cylinder losing, inadequate scrap management, and bottlenecking in body welding were identified as three of the main problems that could be addressed through Industry 4.0. Potential solutions were considered and found suitable solutions for the problems. For example, Radio-Frequency Identification (RFID) tool was proposed to prevent the illegal cross-filling and illegal cylinder swapping problems and it will help for cylinder identification. A rough techno-economic feasibility analysis was also done for the proposed solutions, which will be helpful for SMEs manager to decide regarding when and how to migrate Industry 4.0.


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