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  1. 113 工学系研究科・工学部
  2. 21 電子工学専攻
  3. 1132225 修士論文(電子工学専攻)
  1. 0 資料タイプ別
  2. 20 学位論文
  3. 025 修士論文

Structural and Temporal Analysis for Time-Varying-Meshes

http://hdl.handle.net/2261/32343
2a09ec86-99f1-4a22-bebc-c15abfe27c54
名前 / ファイル ライセンス アクション
37066979.pdf 37066979.pdf (10.6 MB)
Item type 学位論文 / Thesis or Dissertation(1)
公開日 2011-08-08
タイトル
タイトル Structural and Temporal Analysis for Time-Varying-Meshes
言語
言語 eng
キーワード
主題 Time-Varying-Meshes
主題Scheme Other
キーワード
主題 Segmentation
主題Scheme Other
キーワード
主題 Motion tracking
主題Scheme Other
資源タイプ
資源 http://purl.org/coar/resource_type/c_46ec
タイプ thesis
その他のタイトル
その他のタイトル Time-Varying-Meshesの構造解析と動き抽出
著者 Lee, Ning Sung

× Lee, Ning Sung

WEKO 5807

Lee, Ning Sung

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著者別名
識別子
識別子 5808
識別子Scheme WEKO
姓名
姓名 リー, ニンサン
著者所属
著者所属 東京大学大学院工学系研究科 電子工学専攻
著者所属
著者所属 Department of Electronic Engineering, The University of Tokyo
Abstract
内容記述タイプ Abstract
内容記述 This thesis proposes algorithms for structural and temporal analysis for Time- Varying-Meshes (TVMs), through hierarchical skeleton-based mesh segmentation and surface curvature matching. The motivation is to understand and retrieve structural information while establishing spatio-temporal correspondence in TVMs. With that, we can also achieve markerless motion transfer from humans onto synthetic models. The thesis also introduces a parts-based skeleton extraction method using geodesic distances to handle badly-defined meshes that are common in TVMs. Thus the algorithm enables tracking of highly deformable models with arbitrary genus. The proposed framework is a recursive system that iterates between hierarchical segmentation on minimum distance satisfaction and skeleton realignment to refine a kinetic model for each TVM frame. Results show that the segmentation is stable and successful motion tracking is achieved from TVMs. We also explore the use of surface curvatures in Iterated Closest Point (ICP) matching for more refined motion understanding on the segmented results. Results show that processing time can be reduced by 80% while retaining the same level of accuracy. Multi-temporal registration, where the data in the previous and the following frames are used in the 3D shape registration, is used to increase robustness against potential bad registration as ICP is sensitive to outliers and deformation. It achieved an angle disparity reduction of average 29% with two additional time registrations.
書誌情報 発行日 2008-09-30
日本十進分類法
主題 549
主題Scheme NDC
学位名
学位名 修士(工学)
学位
値 master
研究科・専攻
工学系研究科電子工学専攻
学位授与年月日
学位授与年月日 2008-09-30
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