Milan Svanda
Czech Technical University in Prague
58 Papers
204 Citations
Milan Svanda is an academic researcher from Czech Technical University in Prague. The author has contributed to research in topics: Chipless RFID & Antenna (radio). The author has an hindex of 14, co-authored 48 publications.
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Papers
Improvement in Robustness and Recognizability of RCS Response of U-Shaped Strip-Based Chipless RFID Tags
TL;DR: In this paper, the authors presented a significant improvement in robustness and recognizability of radar cross section (RCS) response of the two topologically rearranged 20-bit U-shaped strip-based tags for spectral signature-based chipless RFID systems.
86
Matching Technique for an On-Body Low-Profile Coupled-Patches UHF RFID Tag and for Sensor Antennas
Milan Svanda,Milan Polivka +1 more
TL;DR: In this article, an impedance matching technique for extremely low-profile on-body UHF RFID tag antennas based on coupled shorted-patch antennas was proposed, which employs a novel arrangement of comb-notches perpendicular to the central radiation slot that excites the close higher order mode that affects the field distribution of the fundamental mode and sets the input impedance to the required complex values.
53
UHF RF Identification of People in Indoor and Open Areas
TL;DR: In this article, the performance of an ultra-high-frequency RF identification (ID) system operating at 869 MHz, intended for the ID of persons in both indoor and open areas, has been validated using the propagation models, as well as the series of practical measurements.
45
Chipless RFID Tag Based on Electrically Small Spiral Capacitively Loaded Dipole
TL;DR: In this article, a 20-bit chipless radiofrequency identification transponder (tag) based on spiral capacitively loaded dipole scatterers of electrical size is presented.
36
Platform Tolerant, High Encoding Capacity Dipole Array-Plate Chipless RFID Tags
TL;DR: An in-depth review of the performance parameters of frequency-domain chipless RFID transponders in terms of their spatial density, spectral capacity, and comprehensive encoding capacity, which constitutes one of the highest values, while achieving a concurrently high level of radar cross section (RCS) reflection response and platform tolerance performance.