DocumentCode :
2786068
Title :
A Field Programmable RFID Tag and Associated Design Flow
Author :
Jones, Alex K. ; Hoare, Raymond R. ; Dontharaju, Swapna R. ; Tung, Shenchih ; Sprang, Ralph ; Fazekas, Josh ; Cain, James T. ; Mickle, Marlin H.
Author_Institution :
Dept. of Electr. & Comput. Eng., Pittsburgh Univ., PA
fYear :
2006
fDate :
24-26 April 2006
Firstpage :
165
Lastpage :
174
Abstract :
Current radio frequency identification (RFID) systems generally have long design times and low tolerance to changes in specification. This paper describes a field programmable, low-power active RFID tag, and its associated specification and automated design flow. RFID primitives to be supported by the tag are enumerated with RFID macros, or assembly-like descriptions of the tag operations. From these, the RFID preprocessor generates templates automatically. The behavior of each RFID primitive is specified using ANSI C in the template. The resulting file is compiled by the RFID compiler. A smart buffer sits between the transceiver and the tag controller, to detect whether incoming packets are intended for the tag. By doing so, the main controller may remain powered down to reduce power consumption. Two system-on-a-chip implementation strategies are presented. First, a microprocessor based system for which a C program is automatically generated. The second includes a block of low-power FPGA logic. The user supplied RFID logic in ANSI-C is automatically converted into combinational VHDL by the RFID compiler. Based on a test program, the processors required 183, 43, and 19 muJ per transaction for StrongARM, XScale, and EISC processors, respectively. By replacing the processor with a Coolrunner II, the controller can be reduced to 1.11 nJ per transaction
Keywords :
field programmable gate arrays; radiofrequency identification; system-on-chip; transceivers; ANSI-C; C program; Coolrunner II; EISC processors; StrongARM; VHDL; XScale; design flow; field programmable RFID tag; low power FPGA logic; microprocessor-based system; radio frequency identification systems; smart buffer; system on a chip; tag controller; transceivers; Active RFID tags; Assembly; Automatic control; Energy consumption; Field programmable gate arrays; Microprocessors; RFID tags; Radiofrequency identification; System-on-a-chip; Transceivers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Field-Programmable Custom Computing Machines, 2006. FCCM '06. 14th Annual IEEE Symposium on
Conference_Location :
Napa, CA
Print_ISBN :
0-7695-2661-6
Type :
conf
DOI :
10.1109/FCCM.2006.7
Filename :
4020905
Link To Document :
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