Bilateral Filter for the Optimization of Composite Structures
In the present study, we propose to integrate the bilateral filter into the Shepard-interpolation-based method for the optimization of composite structures. The bilateral filter is used to avoid defects in the structure that may arise due to the gap/overlap of adjacent fiber tows or excessive curvat...
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Published in | Computer modeling in engineering & sciences Vol. 127; no. 3; pp. 1087 - 1099 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Tech Science Press
01.01.2021
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Abstract | In the present study, we propose to integrate the bilateral filter into the Shepard-interpolation-based method for the optimization of composite structures. The bilateral filter is used to avoid defects in the structure that may arise due to the gap/overlap of adjacent fiber tows or
excessive curvature of fiber tows. According to the bilateral filter, sensitivities at design points in the filter area are smoothed by both domain filtering and range filtering. Then, the filtered sensitivities are used to update the design variables. Through several numerical examples, the
effectiveness of the method was verified. |
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AbstractList | In the present study, we propose to integrate the bilateral filter into the Shepard-interpolation-based method for the optimization of composite structures. The bilateral filter is used to avoid defects in the structure that may arise due to the gap/overlap of adjacent fiber tows or excessive curvature of fiber tows. According to the bilateral filter, sensitivities at design points in the filter area are smoothed by both domain filtering and range filtering. Then, the filtered sensitivities are used to update the design variables. Through several numerical examples, the effectiveness of the method was verified. In the present study, we propose to integrate the bilateral filter into the Shepard-interpolation-based method for the optimization of composite structures. The bilateral filter is used to avoid defects in the structure that may arise due to the gap/overlap of adjacent fiber tows or excessive curvature of fiber tows. According to the bilateral filter, sensitivities at design points in the filter area are smoothed by both domain filtering and range filtering. Then, the filtered sensitivities are used to update the design variables. Through several numerical examples, the effectiveness of the method was verified. |
Author | Xia, Qi Pu, Shiming Tian, Ye Huo, Yuhang Shi, Tielin |
Author_xml | – sequence: 1 givenname: Yuhang surname: Huo fullname: Huo, Yuhang – sequence: 2 givenname: Ye surname: Tian fullname: Tian, Ye – sequence: 3 givenname: Shiming surname: Pu fullname: Pu, Shiming – sequence: 4 givenname: Tielin surname: Shi fullname: Shi, Tielin – sequence: 5 givenname: Qi surname: Xia fullname: Xia, Qi |
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SubjectTerms | Bilateral Filtering Composite Structure Composite structures Design Optimization Fiber Angle Optimization Filtration Interpolation Manufacturability Constraints Optimization Shepard Interpolation |
Title | Bilateral Filter for the Optimization of Composite Structures |
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