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Symmetry Properties in Transmission Lines Loaded with Electrically Small Resonators - Circuit Modeling and Applications... Symmetry Properties in Transmission Lines Loaded with Electrically Small Resonators - Circuit Modeling and Applications (Hardcover, 1st ed. 2016)
Jordi Naqui
R4,305 R3,376 Discovery Miles 33 760 Save R929 (22%) Ships in 12 - 17 working days

This book discusses the analysis, circuit modeling, and applications of transmission lines loaded with electrically small resonators (mostly resonators inspired by metamaterials), focusing on the study of the symmetry-related electromagnetic properties of these loaded lines. It shows that the stopband functionality (resonance) that these lines exhibit can be controlled by the relative orientation between the line and the resonator, which determines their mutual coupling. Such resonance controllability, closely related to symmetry, is essential for the design of several microwave components, such as common-mode suppressed differential lines, novel microwave sensors based on symmetry disruption, and spectral signature radio-frequency barcodes. Other interesting aspects, such as stopband bandwidth enhancement (due to inter-resonator coupling, and related to complex modes) and magnetoelectric coupling between the transmission lines and split-ring resonators, are also included in the book.

Symmetry Properties in Transmission Lines Loaded with Electrically Small Resonators - Circuit Modeling and Applications... Symmetry Properties in Transmission Lines Loaded with Electrically Small Resonators - Circuit Modeling and Applications (Paperback, Softcover reprint of the original 1st ed. 2016)
Jordi Naqui
R3,403 Discovery Miles 34 030 Ships in 10 - 15 working days

This book discusses the analysis, circuit modeling, and applications of transmission lines loaded with electrically small resonators (mostly resonators inspired by metamaterials), focusing on the study of the symmetry-related electromagnetic properties of these loaded lines. It shows that the stopband functionality (resonance) that these lines exhibit can be controlled by the relative orientation between the line and the resonator, which determines their mutual coupling. Such resonance controllability, closely related to symmetry, is essential for the design of several microwave components, such as common-mode suppressed differential lines, novel microwave sensors based on symmetry disruption, and spectral signature radio-frequency barcodes. Other interesting aspects, such as stopband bandwidth enhancement (due to inter-resonator coupling, and related to complex modes) and magnetoelectric coupling between the transmission lines and split-ring resonators, are also included in the book.

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