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Titlebook: Chipless RFID; Design Procedure and Reza Rezaiesarlak,Majid Manteghi Book 2015 Springer International Publishing Switzerland 2015 Anti-coll

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https://doi.org/10.1007/978-94-011-5714-8eradiate the incident field as much as possible in order to maximize signal-to-noise ratio (SNR) in the reader. As the encoder, it needs to encode a high density of data on the backscattered signal. There are some challenges in attaining all desired characteristics of the tag as the scatterer and en
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BonJour and the Myth of the Given,jects (clutter), and noise. Therefore, the detection process is a challenging aspect in the design of chipless RFID systems. In most situations, the reflections from background objects are stronger than the tag response. The identification can be performed based on the time-domain or frequency-domai
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https://doi.org/10.1057/9781137012265as the location and ID of the tags should be extracted from the received signal. In applications where multiple tags are present in the reader area, we need to first distinguish the tag’s responses from the responses of the background objects around the tag. After the detection process, the location
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,Reason and Conduct in Hume’s Predecessors,anch cuts, and an entire function in the complex frequency plane. In this chapter, after a comprehensive study of the SEM, the wavefront representation of the SEM is presented to describe the scattering mechanisms in the early-time and late-time modes. Altes’ model is employed to describe the early-
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BonJour and the Myth of the Given, such as short-time Fourier transform (STFT) and wavelet transform are studied in more detail. A new technique, called short-time matrix pencil method (STMPM) is introduced by which the resonant frequencies and damping factors of the CNRs are extracted from the time-domain response. It will be shown
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