A novel encoding paradigm for chipless radio frequency identification (RFID) tags based on phase quantization is presented. The most distinctive features of this approach are represented by the low requirement on bandwidth and by the encoding scheme. The former is achieved by using only a multifrequency reading without resorting to ultrawideband systems, whereas the latter relies on linking the information to the quantized difference between the TE and TM phase response of the tag. The encoding mechanism is described as well as the decoding procedure. The reliability of the illustrated approach is experimentally validated by measurements on fabricated prototypes
International audienceThis article presents an innovative contribution, which is the design of a nov...
A fully passive printable chipless RFID system is presented. The chipless tag uses the amplitude and...
The data density per surface (DPS) is a figure of merit in chipless radiofrequency identification (c...
A novel encoding paradigm for chipless RFID tags based on phase quantization is presented. The most ...
Radio Frequency Identification (RFID) is a widespread tool used in a large spectrum of application s...
The phase response of an High-Impedance Surface (HIS) to an incident plane wave linearly polarized i...
International audienceA novel temporal multi-frequency encoding technique based on group delay for c...
A novel robust encoding mechanism for spectral-domain chipless tags is proposed. The idea is based o...
EMW Publishing, USA.International audienceA time domain chipless RFID tag based on cascaded microstr...
Radio Frequency Identification (RFID) is a modern wireless data transmission and reception technique...
Radio Frequency Identification (RFID) systems are currently a major research area globally. Most of ...
One of the key factors that provides the potential for chipless radiofrequency identification (RFID)...
Radio Frequency Identification (RFID) is a wireless data transmission and reception technology for a...
A reliable encoding/detection scheme for chipless radio frequency identification (RFID) tags, free f...
This paper reviews the main features of chipless RFID tags realized with High-Impedance Surfaces. Th...
International audienceThis article presents an innovative contribution, which is the design of a nov...
A fully passive printable chipless RFID system is presented. The chipless tag uses the amplitude and...
The data density per surface (DPS) is a figure of merit in chipless radiofrequency identification (c...
A novel encoding paradigm for chipless RFID tags based on phase quantization is presented. The most ...
Radio Frequency Identification (RFID) is a widespread tool used in a large spectrum of application s...
The phase response of an High-Impedance Surface (HIS) to an incident plane wave linearly polarized i...
International audienceA novel temporal multi-frequency encoding technique based on group delay for c...
A novel robust encoding mechanism for spectral-domain chipless tags is proposed. The idea is based o...
EMW Publishing, USA.International audienceA time domain chipless RFID tag based on cascaded microstr...
Radio Frequency Identification (RFID) is a modern wireless data transmission and reception technique...
Radio Frequency Identification (RFID) systems are currently a major research area globally. Most of ...
One of the key factors that provides the potential for chipless radiofrequency identification (RFID)...
Radio Frequency Identification (RFID) is a wireless data transmission and reception technology for a...
A reliable encoding/detection scheme for chipless radio frequency identification (RFID) tags, free f...
This paper reviews the main features of chipless RFID tags realized with High-Impedance Surfaces. Th...
International audienceThis article presents an innovative contribution, which is the design of a nov...
A fully passive printable chipless RFID system is presented. The chipless tag uses the amplitude and...
The data density per surface (DPS) is a figure of merit in chipless radiofrequency identification (c...