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Comparison of VLP-16 and MRS-1000 LiDAR systems with absolute interferometer

机译:VLP-16与绝对干涉仪MRS-1000 LIDAR系统的比较

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Nowadays, LiDARs hold a relevant place in providing the environmental sensing required by most ADAS. Promoted by such increasing demand, many new manufacturers are emerging and, new LiDARs are continuously made available on the market. If, on the one hand, the availability of LiDARs with increasing performance and reducing cost has brought significant benefits also promoting the spread of such measuring systems in other areas such as industrial controls and agriculture, on the other, it has made it more difficult to extricate in the immense set of LiDARs present on the market today. In response to this growing need for standards and methods capable of comparing the various LiDARs, many international standards and scientific publications are being produced on the subject. In this paper, we continue our work on LiDARs characterization, focusing our attention on comparing the performances of two of the most popular systems — namely, the MRS 1000 by Sick and the VLP 16 by Velodyne. Starting from the analysis of the warm-up time and stability, such a comparison focused on analyzing the axial error of both systems. Such errors have been estimated by exploiting a custom rail system and an absolute interferometer. The obtained results revealed warm-up times of a few tens of minutes and maximum absolute axial errors of a few centimeters in the range [1.5, 21] m.
机译:如今,Lidars在提供大多数ADAS所需的环境感官方面持有一个相关的地方。通过这种需求增加,许多新的制造商正在涌现,新的Lidars在市场上不断提供。一方面,随着延迟性能和降低成本的延期乐队的可用性带来了显着的益处,也促进了这种测量系统在其他地区的传播,例如工业控制和农业,另一方面,它使它变得更加困难在今天市场上存在的巨大潮流标准。为应对这种越来越多的标准和方法能够比较各种潮流乐队的方法,正在对该主题产生许多国际标准和科学出版物。在本文中,我们继续我们对Lidars表征的工作,专注于对比较最受欢迎的两个系统的表演的关注 - 即,通过Velodyne和VLP 16的MRS 1000。从分析开始预热时间和稳定性,这种比较集中在分析两个系统的轴向误差。通过利用自定义轨道系统和绝对干涉仪来估计这些误差。所获得的结果显示出几十分钟的预热时间,并且在[1.5,21] m的范围内几厘米的最大绝对轴向误差。

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