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Tao Tian

Researcher at National University of Defense Technology

Publications -  8
Citations -  40

Tao Tian is an academic researcher from National University of Defense Technology. The author has contributed to research in topics: Metamaterial & Electromagnetic compatibility. The author has an hindex of 2, co-authored 3 publications receiving 6 citations.

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Flexible and Reconfigurable Frequency Selective Surface With Wide Angular Stability Fabricated With Additive Manufacturing Procedure

TL;DR: In this paper, a flexible and frequency-reconfigurable bandstop frequency selective surface (FSS) is studied theoretically and experimentally, where the FSS patterns are fabricated on an ultrathin flexible substrate through screen printing, a low-cost, high-efficiency additive manufacturing methodology.
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Screen Overprinted Flexible Radar Absorber Composed of Planar Resistor Loaded Metamaterials

TL;DR: In this article, a flexible metamaterial absorber manufactured with a layer-by-layer screen-overprinting methodology has been theoretically and experimentally studied in the X-band (8.3-10.9 GHz) and its working principle has been verified and analyzed.
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Design and Analysis of Multiband Energy Selective Surface Based on Semiconductors

TL;DR: In this paper , a multiband energy selective surface (ESS) with nonlinear transmission response to the power of incidence in multiple frequency band is proposed, which can be obtained with both parallel and serial LC resonance circuits and each single operating band can be modulated from a passband with low insertion loss to a stopband with high shielding effectiveness.

Design of a Quasi-TEM Waveguide for the High-Intensity-Field Measurement of the Field-Induced Metasurfaces

TL;DR: In this article , a quasi-TEM waveguide adopts two artificial magnetic conductors (AMCs) on the sidewalls of a standard rectangular waveguide, which performs perfect magnetic conductor (PMC) properties at its resonant frequency.

Design and Analysis of Response Threshold of Energy Selective Surface Based on Diode Girds

TL;DR: In this article , a detailed analysis of the response threshold of energy selective surface (ESS) based on semiconductors is presented, where the effects of various design parameters and the implied physical mechanism are investigated using electromagnetic simulations and experiments.