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研究生: 魏正
Zheng Wei
論文名稱: 中國組合亭程序化建模
Procedural Modeling of Combinative Chinese Pavilion
指導教授: 戴文凱
Wen-Kai Tai
口試委員: 張國清
Kuo-Ching Chang
鮑興國
Hsing-Kuo Pao
學位類別: 碩士
Master
系所名稱: 電資學院 - 資訊工程系
Department of Computer Science and Information Engineering
論文出版年: 2020
畢業學年度: 108
語文別: 中文
論文頁數: 100
中文關鍵詞: 三維模型程序化建模中國涼亭中國組合亭
外文關鍵詞: 3D Modeling, Procedural Modeling, Chinese Architecture
相關次數: 點閱:148下載:7
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  • 程序化建模可改善傳統建模產業。傳統建模採用人工的方法,藉由繁瑣的軟體輔助功能,重複地拼湊並調整細節,過程緩慢且難以變更架構。而程序化建模藉由一套規則,將細碎模型自動化組成目標,可降低錯誤的風險,加速建模過程,改善傳統建模問題。本文提出一個程序化建模方法,改善中國組合亭建模過程與結果。經考究清朝建築古法,挑選各亭所需建材模型,以數個控制點和參數,自動化推算建材模型屬性,組成可變結構的單體涼亭,再以偵測範圍自動化合成複數個單體亭,解決建材模型彼此侵入的問題。主要貢獻為提出中國組合亭的程序化建模方法,並以視覺化界面實作,藉由少數操作即可自動化改變模型架構。實驗結果顯示此方法加速28倍傳統建模過程,減少約20%模型的點面數量。


    Procedural modeling could improve traditional modeling industry. Traditional modeling industry creates 3D model by manual work. This work which repeatedly adjust properties and minutiae using complicated auxiliary function is inefficient. Hard to change architecture. However, procedural modeling automatically creates model by a set of rules, and this could reduce the risk of error and accelerate modeling process, improving traditional modeling efficiency. This paper proposes an algorithm of procedural modeling for Combinative Chinese Pavilion by research Chinese architecture of Qing Dynasty, implementing system by parameterization and visualize icon. The system could automatically calculate model properties, creating variable architecture of Chinese Pavilion model. Then, integrate multiple pavilion model by sensible space. The contribution of this thesis is to propose an algorithm of procedural modeling for Combinative Chinese Pavilion and implement into software system by graphical user interface. Simple operating could create model. The result shows the algorithm could accelerate 28 times process and reduce 20% points and faces.

    論文摘要 I ABSTRACT II 誌謝 III 目錄 IV 圖表索引 VI 壹 前言 1 一 背景與動機 1 二 中國古建築分析 4 貳 相關研究 11 一 中國古建築種類 11 二 程序化建模 12 參 涼亭建模 16 一 系統簡介 16 二 單體亭建構 17 三 多體亭合併 46 肆 組合分析 54 一 組合種類 54 二 組合樣式 55 伍 研究成果 67 一 實驗環境 67 二 點面統計 69 三 耗時檢測 73 四 擬真對照 75 陸 結論 82 參考文獻 83 附錄 86

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