Document Type : Review Article

Authors

1 Department of Electrical Engineering, Technical & Vocational University, Mohajer Center, Isfahan, Iran.

2 Department of Electrical Engineering, Majlesi Branch, Islamic Azad University, Isfahan, Iran

3 Young Researchers Club, Majlesi Branch, Islamic Azad University, Isfahan, Iran

Abstract

The demand for RFID tags has recently increased due to the development of the RFID. Over the past decade, great efforts have been devoted to the design of RFID tags without chip inside. The concept of chipless RFID tags appears to be a promising solution for low cost item tagging because the cost of active RFID tag depends mainly on the chip used in them. This paper presents the progress of the chipless RFID tag and introduces major studies in this filed. Advantages and disadvantages of these methods are pointed out.對無芯片RFID標籤設計回顧摘要用於RFID標籤的需求,最近增加,由於該RFID的發展。在過去的十年中,大力一直致力於內部的RFID標籤的設計沒有芯片。無芯片RFID標籤的概念似乎是低成本產品標籤有前途的解決方案,因為有源RFID標籤的成本主要取決於在其中所使用的芯片上。本文介紹了無芯片RFID標籤的進展,並在該申請引入重大研究。優點和這些方法的缺點指出。

Keywords

[1] A. Chamarti and K.Varahramyan, “Transmission delay line based ID generation circuit for RFID applications,” IEEE Trans. Microw. Wireless Compon. Lett, vol. 16, pp. 588 – 590, Nov. 2006.
[2] L. Zheng, S. Rodriguez, L. Zahng and B. Shao, “Design and implementation of a fully
reconfigurable chipless RFID tag using inkjet
printing technology,” in IEEE Int. Circuits Systs. Symp., Seattle, WA, 18-21 May 2008, pp. 1524 – 1527.
[3] P. Harrop and R. Das “Printed and chipless RFID forecasts, technologies & players 2009-2029,”
IDTechEx, 2009, pp. 2
[4] E. S. Sundholm, “Amorphous oxide semiconductor thin-film transistor ring oscillators and material assessment,” M.S. thesis, Elect. & Comput. Eng. Dept., Oregon State Univ., pp. 81-84, 2010.
[5] V. Subramanian, J. M. J. Frechet, P. C. Chang and D.C. Huang, “Progress toward development of all-printed RFID tags: materials, processes, and devices,” Proc. Of IEEE, Vol. 93, pp. 1330 – 1338, July 2005.
[6] http://www.polyic.com/products/polyidr.html
[7] P. R. Hartmann, “A passive SAW based RFID system for use on ordnance,” in 2009 IEEE Int. Conf. on RFID, pp. 291-297.
[8] I. Jalaly and I. D. Robertson, “Capacitively-tuned split microstrip resonators for RFID barcodes,” presented at the European Microw. Conf. Paris, France, 4-6 Oct. 2005
[9] J. McWay, A. Hoorfar, and N. Engheta, “Theory and experiments on Peano and Hilbert curve RFID tags,” presented at the Int. SPIE. Symp. On Defense and Security, April 2006.
[10] D. Girbau, J. Lorenzo, A. Lazaro, C. Ferrater and R. Villarino, “Frequency-coded chipless RFID tag based on dual-band resonators,” IEEE Antennas Wireless Propag. Lett., Vol. 11, pp. 126-128, 2012.
[11] H. S. Jang, W. G. Lim, K. S. Oh, S. M. Moon and J. W. YU, “Design of low-cost chipless system using printab chipless tag with electromagnetic code,” IEEE Trans. Microw. Wireless Compon. Lett. Vol. 20, pp. 640-642, Nov. 2010.
[12] S. Preradovic and N. C. Karmakar, “Design of fully printable planar chipless RFID transponder with 35-bit data capacity,” in Proc. 2009 Eur.Microw. Conf., pp. 013–016.
[13] M. D. A. Islam and N. Karamkar, “Design of a 16-bit ultra-low cost fully printable slot-loaded dual-polarized chipless RFID tag,” in Proc. 2011 Asia-Pacific Microw. Conf. pp. 1482-1485.
[14] M. A. Islam, Y. Yap, N. Karmakar, and A. Azad “Compact printable orientation independent chipless RFID tag” Progress in Electromagnetic Research C, Vol. 33. pp. 55-66, 2012.