Liu Yusong, Wang Zhihai, Huang Jichuan, Zhang Liyan
College of Mechanical and Electrical Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 210016, China.
Chengdu Aircraft Industrial (Group) Co., Ltd., Chengdu 610091, China.
Sensors (Basel). 2024 May 24;24(11):3358. doi: 10.3390/s24113358.
Aircraft engine systems are composed of numerous pipelines. It is crucial to regularly inspect these pipelines to detect any damages or failures that could potentially lead to serious accidents. The inspection process typically involves capturing complete 3D point clouds of the pipelines using 3D scanning techniques from multiple viewpoints. To obtain a complete and accurate representation of the aircraft pipeline system, it is necessary to register and align the individual point clouds acquired from different views. However, the structures of aircraft pipelines often appear similar from different viewpoints, and the scanning process is prone to occlusions, resulting in incomplete point cloud data. The occlusions pose a challenge for existing registration methods, as they can lead to missing or wrong correspondences. To this end, we present a novel registration framework specifically designed for aircraft pipeline scenes. The proposed framework consists of two main steps. First, we extract the point feature structure of the pipeline axis by leveraging the cylindrical characteristics observed between adjacent blocks. Then, we design a new 3D descriptor called PL-PPFs (Point Line-Point Pair Features), which combines information from both the pipeline features and the engine assembly line features within the aircraft pipeline point cloud. By incorporating these relevant features, our descriptor enables accurate identification of the structure of the engine's piping system. Experimental results demonstrate the effectiveness of our approach on aircraft engine pipeline point cloud data.
飞机发动机系统由众多管道组成。定期检查这些管道以检测任何可能导致严重事故的损坏或故障至关重要。检查过程通常包括使用3D扫描技术从多个视角获取管道的完整3D点云。为了获得飞机管道系统完整且准确的表示,有必要对从不同视角获取的各个点云进行配准和对齐。然而,飞机管道的结构从不同视角看往往相似,并且扫描过程容易出现遮挡,导致点云数据不完整。这些遮挡给现有的配准方法带来了挑战,因为它们可能导致对应关系缺失或错误。为此,我们提出了一种专门为飞机管道场景设计的新颖配准框架。所提出的框架包括两个主要步骤。首先,我们利用相邻块之间观察到的圆柱特征提取管道轴线的点特征结构。然后,我们设计了一种新的3D描述符,称为PL-PPFs(点线-点对特征),它结合了飞机管道点云内管道特征和发动机装配线特征的信息。通过纳入这些相关特征,我们的描述符能够准确识别发动机管道系统的结构。实验结果证明了我们的方法在飞机发动机管道点云数据上的有效性。