Qin, Wei‐yang
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4

Harvest more bridge vibration energy by nonlinear multi-sta..:

Zhou, Zhiyong ; Huang, Haobo ; Cao, Di...
Journal of Physics D: Applied Physics.  57 (2024)  13 - p. 135501 , 2024
 
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5

Efficiently harvesting low-speed wind energy by a novel bi-..:

Zhou, Zhiyong ; Cao, Di ; Huang, Haobo.
Mechanical Systems and Signal Processing.  209 (2024)  - p. 111124 , 2024
 
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6

Double bistable superposition strategy for improving the pe..:

Liu, Jiayi ; Luo, Hongchun ; Yang, Tao...
Mechanical Systems and Signal Processing.  212 (2024)  - p. 111304 , 2024
 
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7

Theoretical and experimental study of a bi-stable piezoelec..:

Li, Haitao ; Zheng, Tianyu ; Qin, Weiyang...
Applied Mathematics and Mechanics.  45 (2024)  3 - p. 461-478 , 2024
 
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8

A broadband zigzag-shaped energy harvester for both wind en..:

Pan, Jianan ; Zhang, Xuhui ; Qin, Weiyang...
Journal of Physics D: Applied Physics.  56 (2023)  14 - p. 144002 , 2023
 
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9

Harvesting weak vibration energy by amplified inertial forc..:

Liu, Qi ; Qin, Weiyang ; Yang, Yongfeng.
Mechanical Systems and Signal Processing.  189 (2023)  - p. 110125 , 2023
 
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13

Nonlinear dynamical and harvesting characteristics of bista..:

Li, Haitao ; Dong, Bojian ; Cao, Fan...
Communications in Nonlinear Science and Numerical Simulation.  125 (2023)  - p. 107400 , 2023
 
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14

Improving the galloping energy harvesting performance with ..:

Li, Hai-Tao ; Ren, He ; Cao, Fan.
International Journal of Mechanical Sciences.  237 (2023)  - p. 107785 , 2023
 
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