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Simulation of 3d laser scanning with phase-based EDM for the prediction of systematic deviations

机译:基于相位的EDM对3d激光扫描进行仿真以预测系统偏差

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Reectorless electro-optical distance measurement (RL-EDM) relies on measuring the round-trip time of opticalsignals transmitted from the instrument and reected by natural surfaces. It is the backbone of laser scanningtechnology, which allows easily digitizing the environment and obtaining 3d models that represent the geometryof the scanned objects. However, the measured distances do not refer to single, well-defined target pointsat the object surface but rather correspond to a weighted average of effective distances within the respectivefootprint of the laser beam. This increases the uncertainty of the measurements and may cause systematicdeviations significantly exceeding the mm-or sub-mm level precision that would otherwise be attainable withEDM technology.In this paper we introduce a numerical simulation of the measurement process for phase-based RL-EDMwith I/Q-demodulation assuming a Gaussian beam profile. The beam is discretized into a fixed number of raysfor each of which the corresponding phase delay and attenuation are calculated. The I- and Q-componentsare obtained by integration over the footprint taking the beam profile into account. By deection of the beaminto incrementally changed spatial directions we extend the simulation to one of the 3d scanning process. Thescanned surfaces are represented by triangular irregular meshes (TINs) with high spatial resolution. Each triangleis associated with a reectivity, as a starting point for the modelling of surface properties. The simulation takesthe interplay between the energy distribution within the laser footprint, the surface geometry and the surfacereectivity into account.Herein, we use the simulation framework to study the effects of the angle of incidence, of surface curvatureand of mixed pixels in absence of measurement noise. The results indicate that the angle of incidence at a planarsurface and the surface curvature within the footprint are on the order of 0.1mm or less for small footprint andangles of incidence below about 60 deg. If the footprint and the angle of incidence are very large the biases mayreach mm-level, however even then the impact of measurement noise and surface roughness will typically exceedthese biases, such that they are negligible. On the other hand we show using simulations and real scans of acylinder in front of a planar background, that the impact of mixed pixels or beams only partially hitting anobject may introduce large biases and is practically relevant.
机译:回覆 无扇区电光距离测量(RL-EDM)依赖于测量光缆的往返时间 仪器传输的信号并重新 由自然表面支撑。它是激光扫描的支柱 技术,可以轻松地将环境数字化并获得代表几何体的3D模型 的扫描对象。但是,测得的距离并不指向单个明确定义的目标点 在物体表面上,而是对应于各自内有效距离的加权平均值 激光束的足迹。这增加了测量的不确定性,并可能导致系统的 偏差大大超过毫米级或亚毫米级的精度,否则将无法达到 EDM技术。 在本文中,我们介绍了基于相位的RL-EDM测量过程的数值模拟 I / Q解调假设高斯光束轮廓。光束离散成固定数量的射线 对于每一个,都将计算相应的相位延迟和衰减。 I和Q分量 考虑到光束轮廓,通过在覆盖区上积分而获得。由德 梁的安装 在逐渐变化的空间方向上,我们将模拟扩展到3d扫描过程之一。这 扫描的表面由具有高空间分辨率的三角形不规则网格(TIN)表示。每个三角形 与重新关联 效率,作为建模表面特性的起点。模拟需要 激光足迹内的能量分布,表面几何形状和表面之间的相互作用 回覆 积极性考虑在内。 在这里,我们使用模拟框架来研究入射角,表面曲率的影响 和没有测量噪声的混合像素。结果表明,在平面上的入射角 对于小脚印,表面和脚印内的表面曲率约为0.1mm或更小。 入射角低于约60度。如果占地面积和入射角很大,则可能会产生偏差 达到毫米级,但是即使这样,测量噪声和表面粗糙度的影响通常也会超过 这些偏见,以至于可以忽略不计。另一方面,我们展示了如何使用模拟和真实扫描 平面背景前的圆柱体,表示混合像素或光束的影响仅部分击中了 这个对象可能会带来很大的偏差,并且在实际中是相关的。

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