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15 - Conclusions

Published online by Cambridge University Press:  02 November 2009

Stephen B. Miles
Affiliation:
Massachusetts Institute of Technology
Sanjay E. Sarma
Affiliation:
MIT Auto-ID Labs
John R. Williams
Affiliation:
MIT Auto-ID Labs
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Summary

The principal investigators represented in RFID Technology and Applications have presented a range of practical approaches and models to consider in preparing an RFID implementation strategy as well as for planning future research areas for use of this fast-growing technology. As Sanjay Sarma states in presenting applications for RFID (Ch. 2), passive RFID technology is still in its infancy. We have identified challenging aspects of linking autonomous agents and intelligent handling systems (Ch. 14) with large volumes of distributed data sources such as RFID (Ch. 7). Using a consistent experimental approach based on control theory, test and simulation frameworks have been proposed to help evaluate RFID performance, for applications that start with uniquely identifying products and can include exchanging this information, together with sensor and real-time location data, across enterprises.

By way of summary, three areas emerge from these research initiatives that warrant careful planning, starting with the challenges of using low-power wireless data acquisition technology, with respect both to electromagnetic performance of tags in relationship to specific products and packaging, and to downstream RF environments in which the tags are to be read. These issues have been explored in the technology section (Chs. 2–8).

A second theme is the requirement to extend visibility over entire product lifecycles, an increasingly recurrent topic as governments seek new ways to gain visibility on globalizing supply chains.

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Chapter
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Publisher: Cambridge University Press
Print publication year: 2008

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References

Floerkemeier, C., Lampe, M., and Roduner, C., “Facilitating RFID Development with the Accada Prototyping Platform,” 4th RFID Academic Convocation/EU RFID Forum, Brussels 2007, ed. Barthel, H., McFarlane, D. and Miles, S. (European Commission Directorate General for Information, Society and Media, Brussels, 2007) (http://www.rfidconvocation.eu/Papers%20presented/Technical/Facilitating%20RFID%20Development%20with%20the%20Accada%20 Prototyping%20Platform.pdf0).
Williams, J. R., and Sanchez, A., “Supply Chain Realms with Data Streams and Location Services,” EU RFID 2007 Academic Convocation, Brussels, ed. H. Barthel, D. McFarlane, and S. Miles (European Commission Directorate General for Information, Society and Media, Brussels, 2007) (http://www.rfidconvocation.eu/Papers%20presented/Technical/Supply%20Chain%20Realms%20with%20Data%20Streams%20and%20Location %20Services.pdf).
,IEEE, “IEEE Begins Wireless, Long-wavelength Standard for Healthcare, Retail and Livestock Visibility Networks” (2007) (http://standards.ieee.org/announcements/pr_p19021Rubee.html).
“First Multifrequency Chip Unveiled; Toppan Forms of Japan Has Developed the First RFID Chip That Can Operate at All Frequencies from 13.56 MHz to 2.45 GHz,” (http://www.rfidjournal.com/article/articleview/831/).
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,Altria Group, Inc., PMI Annual Report (2005) (http://www.altria.com/Annual Report/ar2005/2005ar_07_0207.aspx).
Jacoby, D., “RFID Comes of Age,” Executive Briefing, Economist Intelligence Unit in partnership with Harvard Business School Publications (Economist Intelligence Unit, London, 2006).
Womack, J. P., Jones, D. T., and Roos, D., The Machine That Changed the World: The Story of Lean Production (Harper Perennial, New York, 1991).
Chan, R., Ram, S., and Miles, S., “Data Exchange WG Pilot Learnings,” in EPCglobal Cookbook (http://www.epcglobalinc.org/what/cookbook/; http://www.epcglobalna.org/SubscriberTools/InternalImplementationPlanning/EPCRFIDCookbook/tabid/220/Default.aspx).
Heinrich, C. E., RFID and Beyond: Growing Your Business through Real World Awareness (Wiley, New York, 2005).Google Scholar

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