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Yue-Sheng Wang

Researcher at Tianjin University

Publications -  451
Citations -  13991

Yue-Sheng Wang is an academic researcher from Tianjin University. The author has contributed to research in topics: Band gap & Metamaterial. The author has an hindex of 52, co-authored 424 publications receiving 10626 citations. Previous affiliations of Yue-Sheng Wang include Beijing Jiaotong University & Taiyuan University of Science and Technology.

Papers
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Proceedings Article

Determination of similar days in load forecast based on Grey incidence theory

TL;DR: Based on analysis of daily load data and daily meteorological data in Changchun, this article proposed the set of multi-interval weather data is considered as the criterion of determination of similar days.
Journal ArticleDOI

A matrix-exponential decomposition based time-domain method for calculating the defect states of scalar waves in two-dimensional periodic structures

TL;DR: The proposed time-domain method is particularly efficient for the super-cell calculations of the defect states in a 2D periodic structure containing a defect with a wave speed much higher than those of the background materials.
Proceedings ArticleDOI

Wave motion in piezoelectric layered phononic crystals with and without electroded surfaces

TL;DR: In this paper, the influence of electrodes on plane wave excitation and propagation in layered piezoelectric phononic crystals with and without given electric potentials at the metallic interfaces is studied.
Book ChapterDOI

Elastic Wave Propagation in Anisotropic and Functionally Graded Layered Phononic Crystals: Band-Gaps, Pass-Bands and Low Transmission Pass-Bands

TL;DR: In this paper, a mathematical model of plane wave propagation in anisotropic and functionally graded layered phononic crystals with finite and infinite number of unit-cells is described, and a classification of pass-bands and band-gaps is presented based on asymptotic analysis of the wave-fields in periodic layered structures.
Journal ArticleDOI

Sound transmission of active elastic wave metamaterial with double locally resonant substructures surrounded by external mean flow

TL;DR: In this paper , an elastic wave metamaterial with active feedback control is presented to discuss its dynamic effective parameter and sound transmission properties, and the results show that the changes of transmission characteristics in a certain frequency region are consistent with the effective mass density properties of uncoupled unit cell structure.