Finding the internal vector from the plane equation in obtuse triangle element for 2D Semiconductor device simulation
碩士 === 國立中央大學 === 電機工程學系 === 104 === In this thesis, we have successfully developed a new type module which is composed of any triangle mesh elements to simulate 2D semiconductor device. The new type module increases the flexibility to set up the mesh, and it can also effectively decreases the total...
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ndltd-TW-104NCU054420372017-06-10T04:46:48Z http://ndltd.ncl.edu.tw/handle/23626852236012335112 Finding the internal vector from the plane equation in obtuse triangle element for 2D Semiconductor device simulation 由平面方程式求鈍角三角形內部向量及二維元件模擬 Jyun-Kai Hsu 許鈞凱 碩士 國立中央大學 電機工程學系 104 In this thesis, we have successfully developed a new type module which is composed of any triangle mesh elements to simulate 2D semiconductor device. The new type module increases the flexibility to set up the mesh, and it can also effectively decreases the total amount of computation nodes. At first, a simple 2D resistor and PN diode will be simulated and compared to the theoretical for verification. Then, the new module will be applied to simulate the cylindrical semiconductor element by the new version of the trapezoidal mesh segmentation mode, and the simulation result will be compared to the exact value. Finally, we will discuss the problem when the new type module is used to simulate the large angle obtuse triangle mesh. Yao-Tsung Tsai 蔡曜聰 2016 學位論文 ; thesis 54 zh-TW |
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碩士 === 國立中央大學 === 電機工程學系 === 104 === In this thesis, we have successfully developed a new type module which is composed of any triangle mesh elements to simulate 2D semiconductor device. The new type module increases the flexibility to set up the mesh, and it can also effectively decreases the total amount of computation nodes. At first, a simple 2D resistor and PN diode will be simulated and compared to the theoretical for verification. Then, the new module will be applied to simulate the cylindrical semiconductor element by the new version of the trapezoidal mesh segmentation mode, and the simulation result will be compared to the exact value. Finally, we will discuss the problem when the new type module is used to simulate the large angle obtuse triangle mesh.
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Yao-Tsung Tsai |
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Yao-Tsung Tsai Jyun-Kai Hsu 許鈞凱 |
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Jyun-Kai Hsu 許鈞凱 |
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Jyun-Kai Hsu 許鈞凱 Finding the internal vector from the plane equation in obtuse triangle element for 2D Semiconductor device simulation |
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Jyun-Kai Hsu |
title |
Finding the internal vector from the plane equation in obtuse triangle element for 2D Semiconductor device simulation |
title_short |
Finding the internal vector from the plane equation in obtuse triangle element for 2D Semiconductor device simulation |
title_full |
Finding the internal vector from the plane equation in obtuse triangle element for 2D Semiconductor device simulation |
title_fullStr |
Finding the internal vector from the plane equation in obtuse triangle element for 2D Semiconductor device simulation |
title_full_unstemmed |
Finding the internal vector from the plane equation in obtuse triangle element for 2D Semiconductor device simulation |
title_sort |
finding the internal vector from the plane equation in obtuse triangle element for 2d semiconductor device simulation |
publishDate |
2016 |
url |
http://ndltd.ncl.edu.tw/handle/23626852236012335112 |
work_keys_str_mv |
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