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Huanhuan Yang

Researcher at Capella Education Company

Publications -  67
Citations -  2441

Huanhuan Yang is an academic researcher from Capella Education Company. The author has contributed to research in topics: Antenna (radio) & Scattering. The author has an hindex of 17, co-authored 46 publications receiving 1322 citations. Previous affiliations of Huanhuan Yang include Tsinghua University.

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A programmable metasurface with dynamic polarization, scattering and focusing control

TL;DR: Diverse electromagnetic responses of a programmable metasurface with a relatively large scale have been investigated, where multiple functionalities are obtained on the same surface and various EM phenomena including anomalous reflection, diffusion, beam steering and beam forming are successfully demonstrated.
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A 1-Bit $10 \times 10$ Reconfigurable Reflectarray Antenna: Design, Optimization, and Experiment

TL;DR: In this article, an electronically reconfigurable reflectarray antenna (RRA) with $10\times10$ elements is presented with a detailed design procedure for an improved beam-scanning performance.
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RCS Reduction of Waveguide Slot Antenna With Metamaterial Absorber

TL;DR: In this article, the authors investigated the application of metamaterial absorber (MA) to waveguide slot antenna to reduce its radar cross section (RCS) and demonstrated that the monostatic and bistatic RCS of the slot antenna are reduced significantly, and the performance of antenna is preserved simultaneously.
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A 1600-Element Dual-Frequency Electronically Reconfigurable Reflectarray at X/Ku-Band

TL;DR: In this paper, a dual-frequency reconfigurable reflectarray (RRA) is proposed and verified experimentally, which consists of 1600 electronically controllable elements and can operate at two working frequencies with 1-bit phase resolution.
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Wideband RCS Reduction of a Microstrip Antenna Using Artificial Magnetic Conductor Structures

TL;DR: In this article, two different artificial magnetic conductor (AMC) unit cells are designed to obtain 180 $^\circ $ ( $ \pm 30^ √circ $ ) reflection phase difference over broadband frequency range.