A polynomial-based method for topology optimization of phononic crystals with unknown-but-bounded parameters
DOI10.1002/nme.5765zbMATH Open1548.74615MaRDI QIDQ6569280
Guo-Liang Huang, Jian Liu, Wenqing Zhu, Longxiang Xie, Baizhan Xia
Publication date: 8 July 2024
Published in: International Journal for Numerical Methods in Engineering (Search for Journal in Brave)
topology optimizationChebyshev polynomial expansionphononic crystalshybrid discretization modelsparse point sampling
Topological methods for optimization problems in solid mechanics (74P15) Sensitivity analysis for optimization problems on manifolds (49Q12)
Cites Work
- A Chebyshev interval method for nonlinear dynamic systems under uncertainty
- New approximation assisted multi-objective collaborative robust optimization (new AA-mcRO) under interval uncertainty
- A wave based method to predict the absorption, reflection and transmission coefficient of two-dimensional rigid frame porous structures with periodic inclusions
- Dynamic response analysis of stochastic truss structures under non-stationary random excitation using the random factor method
- Three-dimensional vibration analysis of thick rectangular plates using Chebyshev polynomial and Ritz method
- Incremental modeling of a new high-order polynomial surrogate model
- Convergence problem of plane-wave expansion method for phononic crystals
- Generalized stochastic approach for constitutive equation in linear elasticity: a random matrix model
- Interval uncertain method for multibody mechanical systems using Chebyshev inclusion functions
- Optimal synthesis of 2D phononic crystals for broadband frequency isolation
- Hybrid approximation algorithm with Kriging and quadratic polynomial-based approach for approximate optimization
- A boundary meshless method using Chebyshev interpolation and trigonometric basis function for solving heat conduction problems
- Interval static displacement analysis for structures with interval parameters
- A local RBF collocation method for band structure computations of 2D solid/fluid and fluid/solid phononic crystals
- Systematic design of phononic band–gap materials and structures by topology optimization
- An interval finite element approach for the calculation of envelope frequency response functions
- A unified method for the response analysis of interval/random variable models of acoustic fields with uncertain-but-bounded parameters
- Interval spectral stochastic finite element analysis of structures with aggregation of random field and bounded parameters
Related Items (1)
This page was built for publication: A polynomial-based method for topology optimization of phononic crystals with unknown-but-bounded parameters
Report a bug (only for logged in users!)Click here to report a bug for this page (MaRDI item Q6569280)