A novel method is presented to accurately determine the operational range of an on-body, passive ultrahigh-frequency (UHF) radio frequency identification (RFID) system operating in the radiative near field, based on its far-field radiation patterns. To this end, an efficient algorithm based on 3-D multipole expansion of the electromagnetic fields is formulated. By combining the new operator with the simulated or measured stand-alone far-field radiation patterns of the on-body RFID system, a comprehensive and accurate range determination is obtained. Compared with commercial software tools and measurements, we prove the accuracy and improved speed of the novel technique
An experimental study of a modern ultra high frequency (UHF) radio frequency identification (RFID) s...
The rigorous electromagnetic characterization of passive UHF radio frequency identification (RFID) t...
In Radio Frequency Identification (RFID) applications, it is beneficial to know where in a three-dim...
A new algorithm is proposed, leveraging a 3D multipole expansions of the electromagnetic fields, to ...
This paper deals with the analysis of different parameters to characterize the behavior of reader an...
ABSTRACT: Near-field radio frequency identification (RFID) technology has been traditionally used at...
Environmental effects may seriously threaten the performance of UHF RFID systems and reduce the rate...
Radio Frequency IDentification (RFID) deployment is needed for efficient item identification. A simu...
Radio Frequency Identification (RFID) based localization system provides a unique approach to loca...
A preliminary numerical analysis of the power transfer efficiency (PTE) for the forward link of near...
Near-field coupling analysis of UHF RFID systems is addressed. Numerical full-wave simulations are u...
Summarization: This letter proposes a computationally inexpensive, site-specific propagation model, ...
ABSTRACT: RFID is an automatic contactless identification method based on radio frequency (RF). The ...
International audienceIn this paper, the performance of Near-Field UHF RFID systems is investigated ...
The demand for RFID (Radio Frequency IDentification) systems in real-time identification, location-b...
An experimental study of a modern ultra high frequency (UHF) radio frequency identification (RFID) s...
The rigorous electromagnetic characterization of passive UHF radio frequency identification (RFID) t...
In Radio Frequency Identification (RFID) applications, it is beneficial to know where in a three-dim...
A new algorithm is proposed, leveraging a 3D multipole expansions of the electromagnetic fields, to ...
This paper deals with the analysis of different parameters to characterize the behavior of reader an...
ABSTRACT: Near-field radio frequency identification (RFID) technology has been traditionally used at...
Environmental effects may seriously threaten the performance of UHF RFID systems and reduce the rate...
Radio Frequency IDentification (RFID) deployment is needed for efficient item identification. A simu...
Radio Frequency Identification (RFID) based localization system provides a unique approach to loca...
A preliminary numerical analysis of the power transfer efficiency (PTE) for the forward link of near...
Near-field coupling analysis of UHF RFID systems is addressed. Numerical full-wave simulations are u...
Summarization: This letter proposes a computationally inexpensive, site-specific propagation model, ...
ABSTRACT: RFID is an automatic contactless identification method based on radio frequency (RF). The ...
International audienceIn this paper, the performance of Near-Field UHF RFID systems is investigated ...
The demand for RFID (Radio Frequency IDentification) systems in real-time identification, location-b...
An experimental study of a modern ultra high frequency (UHF) radio frequency identification (RFID) s...
The rigorous electromagnetic characterization of passive UHF radio frequency identification (RFID) t...
In Radio Frequency Identification (RFID) applications, it is beneficial to know where in a three-dim...