Evaluation of 94 GHz Radar Sensor Images Obtained from Industrial Environments

J. Detlefsen, M.E. Rozmann
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引用次数: 2

Abstract

Sensing 3-D geometrical properties of an environment is essential for an autonomous vehicle operating inindoor situations like production plants. Compared to Current approaches with wire guidance, autonomous vehicles like mobile robots promise substantially improved flexibility for use in future production plants. Therefore, acquisition of relevant 3-D geometrical information based on sensors is a key requirement for achieving autonomy. Currently at the Technical University of Munich a demonstrator vehicle equipped with a scanning laser camera forthe very close range and a multitask mmwave radar providing 3-D information in the range from 0 m to 50 m is set up to perform autonomous sensorbased locomotion in industrial indoor scenes. This paper reports on evaluation results of the 94 GHz pulse doppler radar with 25 cm radial and 1.5' angular resolution.
工业环境下94ghz雷达传感器图像的评价
对于在生产工厂等室内环境中运行的自动驾驶汽车来说,感知环境的三维几何特性至关重要。与目前使用导线引导的方法相比,移动机器人等自动驾驶汽车有望在未来的生产工厂中大幅提高灵活性。因此,基于传感器获取相关的三维几何信息是实现自主的关键要求。目前,在慕尼黑工业大学,一辆示范车配备了一个近距离扫描激光摄像头和一个多任务毫米波雷达,可提供0米至50米范围内的3d信息,用于在工业室内场景中执行基于传感器的自主运动。本文报道了径向分辨率为25cm、角分辨率为1.5′的94ghz脉冲多普勒雷达的评估结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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