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Automotive Lidar Modelling Approach Based on Material Properties and Lidar Capabilities

机译:基于材料特性和激光雷达能力的汽车激光雷达建模方法

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摘要

Development and validation of reliable environment perception systems for automated driving functions requires the extension of conventional physical test drives with simulations in virtual test environments. In such a virtual test environment, a perception sensor is replaced by a sensor model. A major challenge for state-of-the-art sensor models is to represent the large variety of material properties of the surrounding objects in a realistic manner. Since lidar sensors are considered to play an essential role for upcoming automated vehicles, this paper presents a new lidar modelling approach that takes material properties and corresponding lidar capabilities into account. The considered material property is the incidence angle dependent reflectance of the illuminated material in the infrared spectrum and the considered lidar property its capability to detect a material with a certain reflectance up to a certain range. A new material classification for lidar modelling in the automotive context is suggested, distinguishing between 7 material classes and 23 subclasses. To measure angle dependent reflectance in the infrared spectrum, a new measurement device based on a time of flight camera is introduced and calibrated using Lambertian targets with defined reflectance values at , , and . Reflectance measurements of 9 material subclasses are presented and 488 spectra from the NASA ECOSTRESS library are considered to evaluate the new measurement device. The parametrisation of the lidar capabilities is illustrated by presenting a lidar measurement campaign with a new Infineon lidar prototype and relevant data from 12 common lidar types.
机译:开发和验证用于自动驾驶功能的可靠环境感知系统,需要扩展传统的物理测试驱动器,并在虚拟测试环境中进行仿真。在这样的虚拟测试环境中,感知传感器被传感器模型代替。最新的传感器模型的主要挑战在于以逼真的方式表示周围物体的多种材料特性。由于激光雷达传感器被认为对即将到来的自动驾驶汽车起着至关重要的作用,因此本文提出了一种新的激光雷达建模方法,该方法考虑了材料特性和相应的激光雷达功能。所考虑的材料特性是被照射的材料在红外光谱中与入射角相关的反射率,而所考虑的激光雷达特性是其以高达一定范围的一定反射率检测材料的能力。建议在汽车环境中为激光雷达建模使用新的材料分类,以区分7种材料类别和23种子类别。为了测量红外光谱中与角度相关的反射率,引入了一种基于飞行时间相机的新型测量设备,并使用了在,和定义反射率值的朗伯目标进行校准。提出了9种材料子类的反射率测量,并考虑了NASA ECOSTRESS库中的488个光谱来评估新的测量设备。激光雷达功能的参数化通过展示带有新的Infineon激光雷达原型的激光雷达测量活动以及来自12种常见激光雷达类型的相关数据来说明。

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