Sitemap

A list of all the posts and pages found on the site. For you robots out there is an XML version available for digesting as well.

Pages

Posts

Future Blog Post

less than 1 minute read

Published:

This post will show up by default. To disable scheduling of future posts, edit config.yml and set future: false.

Blog Post number 4

less than 1 minute read

Published:

This is a sample blog post. Lorem ipsum I can’t remember the rest of lorem ipsum and don’t have an internet connection right now. Testing testing testing this blog post. Blog posts are cool.

Blog Post number 3

less than 1 minute read

Published:

This is a sample blog post. Lorem ipsum I can’t remember the rest of lorem ipsum and don’t have an internet connection right now. Testing testing testing this blog post. Blog posts are cool.

Blog Post number 2

less than 1 minute read

Published:

This is a sample blog post. Lorem ipsum I can’t remember the rest of lorem ipsum and don’t have an internet connection right now. Testing testing testing this blog post. Blog posts are cool.

Blog Post number 1

less than 1 minute read

Published:

This is a sample blog post. Lorem ipsum I can’t remember the rest of lorem ipsum and don’t have an internet connection right now. Testing testing testing this blog post. Blog posts are cool.

portfolio

Simulations of Qauntum Random Walk

Use computer program to simulate one dimensional quantum walks with various evolution strategies. The results ate meant to be the references to physical experiments.

publications

Symmetric Quantum Walk With Phase Transition Feature

Published in Physcis Review Meow (In preperation.), 2020

Observations of one-dimention disctete quantum walk.

Recommended citation: Lufter, Pei-Cheng Kuan. (2020). "Symmetric Quantum Walk With Phase Transition Feature" Physcis Review Meow (In preperation.).

Design of Chiral Metamaterials via Deep Neural Networks

Published in Journal 1, 2020

A possibility of designing material geometry using integrated machine learning models and optimization methods.

Recommended citation: Yun‑Che Wang, Chun Wei Liu , Pei‑Chen Cheng , Jyun‑Ping Wang, Tsai‑Wen Ko, "Design of Chiral Metamaterials via Deep Neural Networks" 44th National Conference on Theoretical and Applied Mechanics (CTAM2020). https://lufter.github.io/files/Design_of_Chiral_Metamaterials_via_Deep_Neural_Networks.pdf

talks

Design of Viscoelastic Auxetic Materials Through Machine Deep Learning

Published:

High damping and high stiffness (HDHS) materials can dissipate unwanted vibration energy, such as the ones from earthquakes, at the same time structural integrity can be preserved. Through design, auxeticity, i.e. negative Poisson’s ratio, and viscoelasticity of the HDHS may be enhanced along certain loading directions. By combining high damping polymer with auxetic foam-like material, one may construct composite materials to simultaneously exhibit effective high damping and high stiffness in a reasonably wide frequency window. Such composite materials can be used as dampers in structure systems. In this work, we adopt machine deep learning approach to construct sample data by using realistic aluminum foam as a template. Finite element analysis is utilized to numerically calculate the linear viscoelastic properties of the samples that are generated from machine learning. After the samples are prepared, a deep neural network (DNN) is adopted to train and test the data. High coefficient of determination can be achieved and the DNN is used for searching optimal designs of HDHS auxetic composite materials.