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Unsynchronized Scanning with a Low-Cost Laser Range Finder for Real-Time Range Imaging

机译:使用低成本激光测距仪进行实时范围成像的非同步扫描

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Range imaging plays an essential role in many fields: 3D modeling, robotics, heritage, agriculture, forestry, reverse engineering. One of the most popular range-measuring technologies is laser scanner due to its several advantages' long range, high precision, real-time measurement capabilities, and no dependence on lighting conditions. However, laser scanners are very costly. Their high cost prevents widespread use in applications. Due to the latest developments in technology, now, low-cost, reliable, faster, and light-weight 1D laser range finders (LRFs) are available. A low-cost 1D LRF with a scanning mechanism, providing the ability of laser beam steering for additional dimensions, enables to capture a depth map. In this work, we present an unsynchronized scanning with a low-cost LRF to decrease scanning period and reduce vibrations caused by stop-scan in synchronized scanning. Moreover, we developed an algorithm for alignment of unsynchronized raw data and proposed range image post-processing framework. The proposed technique enables to have a range imaging system for a fraction of the price of its counterparts The results prove that the proposed method can fulfill the need for a low-cost laser scanning for range imaging for static environments because the most significant limitation of the method is the scanning period which is about 2 minutes for 55,000 range points (resolution of 250x220 image). In contrast, scanning the same image takes around 4 minutes in synchronized scanning. Once faster, longer range, and narrow beam LRFs are available, the methods proposed in this work can produce better results.
机译:范围成像在许多领域起着至关重要的作用:3D建模,机器人技术,遗产,农业,林业,逆向工程。激光扫描仪是最流行的测距技术之一,这是因为它具有远距离,高精度,实时测量功能且不依赖照明条件的多个优点。但是,激光扫描仪非常昂贵。它们的高成本阻止了其在应用中的广泛使用。由于技术的最新发展,现在,可以提供低成本,可靠,更快,重量轻的一维激光测距仪(LRF)。具有扫描机制的低成本一维LRF,可提供其他尺寸的激光束控制功能,可捕获深度图。在这项工作中,我们提出了一种具有低成本LRF的非同步扫描,以减少扫描时间并减少同步扫描中因停止扫描而引起的振动。此外,我们开发了一种用于对齐未同步原始数据的算法,并提出了距离图像后处理框架。所提出的技术使得能够以其同等价格的一小部分价格提供一种范围成像系统。结果证明,所提出的方法可以满足针对静态环境下的范围成像的低成本激光扫描的需求,因为这种方法的最大局限性在于方法是55,000个测距点(250x220图像的分辨率)的扫描时间大约为2分钟。相反,在同步扫描中扫描同一图像大约需要4分钟。一旦可获得更快,范围更广且窄波束的LRF,这项工作中提出的方法将产生更好的结果。

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