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Titlebook: Antenna Design Solutions for RFID Tags Based on Metamaterial-Inspired Resonators and Other Resonant ; Simone Zuffanelli Book 2018 Springer

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Antenna and UHF-RFID Tag Design Based on Split-Ring Resonators and Derived Structures,ed in this chapter. The main purposes of this chapter are (i) to validate, by means of experimental data, the analysis from the previous chapter and (ii) to demonstrate the practical utility of metamaterial-inspired resonators in antenna and UHF-RFID tag design.
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https://doi.org/10.1007/978-3-322-87715-4ed to general-purpose UHF-RFID tags. In this work, a novel approach to the problem is proposed, which allows overcoming the abovementioned limitations and greatly reduces the performance gap with respect to general-purpose tags.
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Book 2018equency (UHF)-RFID tag antennas, it examines novel approaches based on the use of metamaterial-inspired resonators and other resonant structures as radiating elements. It also offers an exhaustive analysis of the radiation properties of several metamaterial-inspired resonators such as the split ring
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,Stoßwellen in staubhaltigen Gasen,rison with full-wave EM simulations in different cases, obtaining good agreement. The expressions obtained in this chapter are at the base of the antenna designs presented in the next chapter, where experimental data provided additional validation of the analysis exposed below.
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Radiation Properties of Edge-Coupled Split-Ring Resonators (EC-SRRs) and Derived Structures,etry, which contributed to its widespread diffusion in the metamaterial community, the edge-coupled SRR (EC-SRR) is the topology considered throughout this work. Analytical approach was at the base of the presented results, and provided approximated expressions for the most relevant antenna paramete
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Antenna and UHF-RFID Tag Design Based on Split-Ring Resonators and Derived Structures,CSRR) was provided and validated by means of electromagnetic simulations. Such analysis is at the base of the antenna and UHF-RFID tag designs presented in this chapter. The main purposes of this chapter are (i) to validate, by means of experimental data, the analysis from the previous chapter and (
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