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Shanguo Huang

Researcher at Beijing University of Posts and Telecommunications

Publications -  356
Citations -  2195

Shanguo Huang is an academic researcher from Beijing University of Posts and Telecommunications. The author has contributed to research in topics: Network topology & Computer science. The author has an hindex of 19, co-authored 319 publications receiving 1630 citations. Previous affiliations of Shanguo Huang include Peking University.

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Measurement of the rotational Doppler frequency shift of a spinning object using a radio frequency orbital angular momentum beam.

TL;DR: An indirect approach based on phase measurement is proposed to measure the rotational Doppler frequency shift, which takes full advantage of the phase structure of orbital angular momentum (OAM) beams in radio domain, using a vector network analyzer (VNA) as a phase discriminator.
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Magnetically tunable metamaterial perfect absorber

TL;DR: A magnetically tunable metamaterial perfect absorber (MPA) based on ferromagnetic resonance is experimentally and numerically demonstrated in this article, which is composed of an array of ferrite rods and a metallic ground plane.
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Optical and electrical properties of Zn1-xCdxO films grown on Si substrates by reactive radio-frequency magnetron sputtering

TL;DR: In this paper, the difference between the photoluminescence (PL) spectra taken at room temperature (RT) and at 12K was deduced to be the result of PL emission from the ZnCdO phases with wurtzite and zinc blende structures.
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Multi-link failure restoration with dynamic load balancing in spectrum-elastic optical path networks

TL;DR: Compared with the conventional shared-path protection (SPP) algorithm, the proposed DLBSPP algorithm achieves lower blocking probability, better spectrum utilization ratio (SUR), more reasonable average hop (AH) and higher failure restoration ratio (FRR).
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An orbital angular momentum radio communication system optimized by intensity controlled masks effectively: Theoretical design and experimental verification

TL;DR: In this article, a system of generating and receiving orbital angular momentum (OAM) radio beams, which are collectively formed by two circular array antennas and effectively optimized by two intensity controlled masks, is proposed and experimentally investigated.