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《03_Recent Paradigm Shift in RFID and Smart Antennas》.pdf
CHAPTER 3
RECENT PARADIGM SHIFT IN RFID
AND SMART ANTENNAS
NEMAI CHANDRA KARMAKAR
Department of Electrical and Computer Systems Engineering, Monash University,
Clayton, Victoria, Australia
3.1 INTRODUCTION
In the preceding chapter, a comprehensive review of the RFID technology was pre-
sented. The definition of the enabling automatic identification technology (RFID), its
tag and reader architectures, different generations of RFID tags and readers, global
standards and mandates, and, finally, the emerging application areas of the tag have
been explained. In the very last section of the preceding chapter, the significance of
the chipless tags compared to the expensive chipped tags has been highlighted. It is
imperative that the tag must be chipless to compete with the trillions of optical bar-
codes printed per year. Figure 3.1 shows the projection of the RFID tag price versus
the total usage of tags over 16 years starting from 2004 as reported by IDTechEx
[1]. As can be seen, the RFID tag will replace the trillions of barcodes if they can
be made for less than a cent. This will only be possible if the tags can be made
possibly by direct printing on product or package like optical barcodes. According to
the prediction, this will not happen soon and it may take more than a decade to reach
to that level from its current status of more than 10 cents a tag (2009). Technical
challenges in designing printed electronics at RF frequencies are the main hindrance
of producing a tag for less than a cent.
The conclusion is that the tag must cost less than a cent to coexist or eradicate
the barcode completely. As mentioned earlier, barcodes have known limitations—
they cannot be read non-line-of-sight (NLoS)—behind an obstacle and when they
are stained with soil and grease or are printed on some transparent substrates and in
sunlight and dark. Each barcode needs personal care to be read, which makes the
inventory control and warehouse
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