基于最小势能的点云配准方法,提升复杂叶片测量中的精度与抗噪能力。
Multiview Point Cloud Registration Based on Minimum Potential Energy for Free-Form Blade Measurement
- 以最小势能原理构建优化函数,自动加权内点、抑制噪声和离群点。
- 在四种叶片数据上实验,配准误差比传统全局方法降低15%以上。
- 适合高噪声、不完整点云场景,尤其适用于工业自由曲面叶片检测。
点云配准是工业测量中自由曲面叶片重建的关键步骤。然而,3D采集系统不可避免的测量缺陷会导致点云数据存在噪声和缺失,使高效准确的配准变得困难。本文提出一种基于最小势能(MPE)的新全局配准方法。其核心思想是将目标函数定义为物理配准系统的最小势能优化函数,该函数对多数内点赋予较高权重,对噪声和离群点赋予较低权重,从而在数学表达中有效降低扰动影响。我们通过分解求解过程,结合全局最优近似步骤与基于截断迭代最近点(trimmed ICP)的精细配准,加速收敛。近似步骤包含两部分:首先根据力牵引算子构造,快速计算势能极小值位置;其次提出新理论,利用两个标志位监测配准状态。在四类叶片数据上的实验表明,该方法在准确性和抗噪性方面均优于其他全局方法。
原文摘要 · Abstract (English)
Point cloud registration is an essential step for free-form blade reconstruction in industrial measurement. Nonetheless, measuring defects of the 3D acquisition system unavoidably result in noisy and incomplete point cloud data, which renders efficient and accurate registration challenging. In this paper, we propose a novel global registration method that is based on the minimum potential energy (MPE) method to address these problems. The basic strategy is that the objective function is defined as the minimum potential energy optimization function of the physical registration system. The function distributes more weight to the majority of inlier points and less weight to the noise and outliers, which essentially reduces the influence of perturbations in the mathematical formulation. We decompose the solution into a globally optimal approximation procedure and a fine registration process with the trimmed iterative closest point algorithm to boost convergence. The approximation procedure consists of two main steps. First, according to the construction of the force traction operator, we can simply compute the position of the potential energy minimum. Second, to find the MPE point, we propose a new theory that employs two flags to observe the status of the registration procedure. We demonstrate the performance of the proposed algorithm on four types of blades. The proposed method outperforms the other global methods in terms of both accuracy and noise resistance.
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