1. 南京航空航天大学机电学院,南京,210016
2. 中航西飞民用飞机有限责任公司,西安,710089
纸质出版:2025
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潘高健,张尚安,张政宇,候国义,李泷杲,王书春,黄翔. 面向HUD高保真虚拟装配的零件曲面特征高精度快速拟合方法[J]. 航空制造技术, 2025, 68(12): 82-93.
PAN Gaojian, ZHANG Shangan, ZHANG Zhengyu, HOU Guoyi, LI Shuanggao, WANG Shuchun, HUANG Xiang. High-Precision Fast Fitting Method for Part Surface Features in HUD-Oriented High-Fidelity Virtual Assembly[J]. Aeronautical Manufacturing Technology, 2025, 68(12): 82-93.
潘高健,张尚安,张政宇,候国义,李泷杲,王书春,黄翔. 面向HUD高保真虚拟装配的零件曲面特征高精度快速拟合方法[J]. 航空制造技术, 2025, 68(12): 82-93. DOI: 10.16080/j.issn1671-833x.2025.12.082.
PAN Gaojian, ZHANG Shangan, ZHANG Zhengyu, HOU Guoyi, LI Shuanggao, WANG Shuchun, HUANG Xiang. High-Precision Fast Fitting Method for Part Surface Features in HUD-Oriented High-Fidelity Virtual Assembly[J]. Aeronautical Manufacturing Technology, 2025, 68(12): 82-93. DOI: 10.16080/j.issn1671-833x.2025.12.082.
针对汽车、飞机抬头显示设备(Head-up display,HUD)高保真虚拟装配中零部件曲面类特征高精度的快速拟合需求,提出一种面向蓝光散乱点云的处理与拟合方法。首先,采用K 近邻的点云复合滤波方法去除噪声点与冗余点;其次,基于非均匀有理B 样条(Non-uniform rational B-splines,NURBS)曲面快速基面构建与迭代优化拟合方法对滤波后的点云进行内部曲面快速拟合;最后,基于滚球算法进行点云边界提取及曲面裁剪,以获取准确反映点云边界信息的高精度曲面特征。设计加工HUD 系统成套标准件,获取主反射镜蓝光点云,开展拟合精度与效率评价试验,将本文方法、商业软件方法和文献方法拟合曲面分别与三坐标获取的表面数据进行比对,可知本文方法可在拟合效率明显提升的前提下达到μm 级的拟合精度,满足高保真虚拟装配的技术需求。
Aiming at the requirement of high precision and fast fitting of surface features of parts in high-fidelity virtual assembly of head-up display (HUD) devices of automobiles and aircraft
a blue-ray random point cloud processing and fitting method is proposed. Firstly
the K-nearest neighbor point cloud combination filtering method is used to remove noise points and redundant points. Secondly
the internal surface of the filtered point cloud is quickly fitted based on the fast base surface construction and iterative optimization fitting method of non-uniform rational B-splines (NURBS). Finally
the point cloud boundary extraction and surface cutting are carried out based on the rolling ball algorithm to obtain high-precision surface features which could accurately reflect the point cloud boundary information. A complete set of HUD system standard parts was designed and processed
and the blue-ray point cloud of the main mirror was obtained to carry out fitting accuracy and efficiency evaluation experiments. By comparing the fitting surfaces of the proposed method
commercial software method and literature method with the surface data obtained by three coordinates accordingly
it can be concluded that the proposed method can achieve micron fitting accuracy on the premise of significantly improved fitting efficiency
and can meet the technical requirements of high-fidelity virtual assembly.
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