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THE STATE KEY LA... [3]
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SHI HUABIN [3]
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Journal article [3]
Conference paper [1]
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2022 [3]
2020 [1]
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英語English [3]
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China Ocean Engi... [2]
2020 IEEE Intern... [1]
Ocean Engineerin... [1]
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SCIE [3]
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Investigations on the second-order transient gap resonance induced by focused wave groups
Journal article
Jinshi Liu, Junliang Gao, Huabin Shi, Jun Zang, Qian Liu. Investigations on the second-order transient gap resonance induced by focused wave groups[J]. Ocean Engineering, 2022, 263, 112430.
Authors:
Jinshi Liu
;
Junliang Gao
;
Huabin Shi
;
Jun Zang
;
Qian Liu
Favorite
|
TC[WOS]:
12
TC[Scopus]:
14
IF:
4.6
/
4.8
|
Submit date:2022/12/01
Transient Gap Resonance
Second-order Resonance
Focused Wave Groups
Wave Amplification
Wave Loads
Openfoam®
Investigation on effects of vertical degree of freedom on gap resonance between two side-by-side boxes under wave actions
Journal article
He Zhiwei, Gao Junliang, Shi Huabin, Zang Jun, Chen Hongzhou, Liu Qian. Investigation on effects of vertical degree of freedom on gap resonance between two side-by-side boxes under wave actions[J]. China Ocean Engineering, 2022, 36(3), 403-412.
Authors:
He Zhiwei
;
Gao Junliang
;
Shi Huabin
;
Zang Jun
;
Chen Hongzhou
; et al.
Favorite
|
TC[WOS]:
15
TC[Scopus]:
19
IF:
1.8
/
1.6
|
Submit date:2022/07/23
Heave Motion
Gap Resonance
Openfoam
Wave Height Amplification
Investigation on Effects of Vertical Degree of Freedom on Gap Resonance Between Two Side-by-Side Boxes Under Wave Actions
Journal article
He, Zhi wei, Gao, Jun liang, Shi, Hua bin, Zang, Jun, Chen, Hong zhou, Liu, Qian. Investigation on Effects of Vertical Degree of Freedom on Gap Resonance Between Two Side-by-Side Boxes Under Wave Actions[J]. China Ocean Engineering, 2022, 36(3), 403-412.
Authors:
He, Zhi wei
;
Gao, Jun liang
;
Shi, Hua bin
;
Zang, Jun
;
Chen, Hong zhou
; et al.
Favorite
|
TC[WOS]:
15
TC[Scopus]:
19
IF:
1.8
/
1.6
|
Submit date:2022/08/02
Heave Motion
Gap Resonance
Openfoam
Wave Height Amplification
16.3 A Single-Channel 5.5mW 3.3GS/s 6b Fully Dynamic Pipelined ADC with Post-Amplification Residue Generation
Conference paper
Zheng, Z., Wei, W., Lagos, J., Martens, E., Zhu, Y., Chan, C. H., Craninckx, J., Martins, R. P.. 16.3 A Single-Channel 5.5mW 3.3GS/s 6b Fully Dynamic Pipelined ADC with Post-Amplification Residue Generation[C], 2020.
Authors:
Zheng, Z.
;
Wei, W.
;
Lagos, J.
;
Martens, E.
;
Zhu, Y.
; et al.
Favorite
|
|
Submit date:2022/01/25
Amplifiers
Analogue-digital Conversion
Calibration
Interpolation
Dynamic Pipelined Adc
Dynamic Pipelined Architecture
Linearized Dynamic Amplifier
Post-amplification Residue Generation Scheme
Residue Amplification
Complex Residue-transferring Realization
Residue Amplifier
Power Consumption
Sar Adc
Calibration Complexity
Aggressive Interpolation Factor
Flash Adc
Mm-wave 5g Receivers
Adc-based Serial Links
Power 5.5 Mw
Calibration
Quantization (Signal)
Clocks
System-on-chip
Interpolation
Prototype