Towards THz Chipless High-Q Cooperative Radar Targets for Identification, Sensing, and Ranging

Towards THz Chipless High-Q Cooperative Radar Targets for Identification, Sensing, and Ranging

AngličtinaPevná vazbaTisk na objednávku
Jimenez-Saez, Alejandro
Springer International Publishing AG
EAN: 9783031049750
Tisk na objednávku
Předpokládané dodání v pondělí, 15. července 2024
2 831 Kč
Běžná cena: 3 146 Kč
Sleva 10 %
ks
Chcete tento titul ještě dnes?
knihkupectví Megabooks Praha Korunní
není dostupné
Librairie Francophone Praha Štěpánská
není dostupné
knihkupectví Megabooks Ostrava
není dostupné
knihkupectví Megabooks Olomouc
není dostupné
knihkupectví Megabooks Plzeň
není dostupné
knihkupectví Megabooks Brno
není dostupné
knihkupectví Megabooks Hradec Králové
není dostupné
knihkupectví Megabooks České Budějovice
není dostupné

Podrobné informace

This work systematically investigates the use of high-quality (high-Q) resonators as coding particles of chipless cooperative radar targets to overcome clutter. Due to their high-Q, the backscattered signature can outlast clutter and permit reliable readouts in dynamic environments as well as its integration in other types of cooperative radar targets for joint identification, sensing, and ranging capabilities.

This is first demonstrated with temperature and pressure sensors in the microwave frequency range, which include the characterization of a novel temperature sensor for machine tool monitoring up to 400 °C, as well as inside the machine. Afterwards, the thesis proposes and demonstrates the use of metallic as well as dielectric Electromagnetic BandGap (EBG) structures to enable the realization and to enhance the capabilities at mm-Wave and THz frequencies compared to microwave frequencies with compact monolithic multi-resonator cooperative radar targets. Furthermore, thiswork studies the integration of resonators as coding particles inside larger retroreflective configurations such as Luneburg lenses to achieve long-range and high accuracy for localization and, at the same time, frequency coding robust against clutter for identification. Finally, the successful readout of these cooperative radar targets is demonstrated in cluttered dynamic environments, as well as with readers based on Frequency-Modulated Continuous-Wave (FMCW) radars.

EAN 9783031049750
ISBN 3031049756
Typ produktu Pevná vazba
Vydavatel Springer International Publishing AG
Datum vydání 22. září 2022
Stránky 144
Jazyk English
Rozměry 235 x 155
Země Switzerland
Sekce Professional & Scholarly
Autoři Jiménez-Sáez, Alejandro
Ilustrace 78 Tables, color; 85 Illustrations, color; 4 Illustrations, black and white; XVI, 144 p. 89 illus., 85 illus. in color.
Edice 1st ed. 2022
Série Springer Theses