共 111 条
[71]
LIU C X, YU G L, ZHAO G Y., Neural networks for inverse design of phononic crystals[J], AIP Advances, 9, 8, (2019)
[72]
LUO Y T, LI P Q, LI D T, Et al., Probability-density-based deep learning paradigm for the fuzzy design of functional metastructures, Research, 2020, pp. 1-11, (2020)
[73]
MIAO X B, DONG H W, WANG Y S., Deep learning of dispersion engineering in two-dimensional phononic crystals, Engineering Optimization, 55, 1, pp. 125-139, (2023)
[74]
DONGJ, QIN Q H, XIAO Y., Nelder-mead optimization of elastic metamaterials via machine-learning-aided Surrogate modeling, International Journal of Applied Mechanics, 12, 1, (2020)
[75]
GENG Q, FONG P K, NING J, Et al., Thermally-indueed transitions of multi-frequency defect wave localization and energy harvesting of phononic crystal plate [J], International Journal of Mechanical Sciences, 222, (2022)
[76]
JO S H, YOON H, SHIN Y C, Et al., Elastic wave localization and harvesting using double defect modes of a phononic crystal, Journal of Applied Physics, 127, 16, (2020)
[77]
LEE D, YOUN B D, JO S H., Deep-learning-based framework for inverse design of a defective phononic crystal for narrowband filtering, International Journal of Mechanical Sciences, 255, (2023)
[78]
WANG Y F, WANG Y Z, WU B, Et al., Tunable and active phononic crystals and metamaterials, Applied Mechanics Reviews, 72, 4, (2020)
[79]
HUANG K, LI Y, LAI Y, Et al., Neural network-based inverse design of nonlinear phononic crystals, IEEE Open Journal of Ultrasonics, Ferroelectrics, and Frequency Control, 3, pp. 166-175, (2023)
[80]
HYUN J, KIM M, CHOI W., Partitioned gradient-index phononic crystals for füll phase control, Scientific Reports, 10, 1, (2020)