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Directional processing of ultrasonic arc maps and its comparison with existing techniques

机译:超声波弧图的定向处理及其与现有技术的比较

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摘要

A new technique for processing ultrasonic arc maps is proposed and compared to six existing techniques for map-building purposes. These techniques are simple point marking along the line-of-sight, voting and thresholding, morphological processing, Bayesian update scheme for occupancy grids, arc-transversal median algorithm, and triangulation-based fusion. The directional maximum technique, newly proposed in this paper, employs directional processing to extract the map of the environment from ultrasonic arc maps. It aims at overcoming the intrinsic angular uncertainty of ultrasonic sensors in map building, as well as eliminating noise and cross-talk related misreadings. The compared techniques are implemented with a wall-following motion-planning scheme for ground coverage. The comparison is based on experimental data and three complementary error criteria: mean absolute error, correct detection rate for full and empty regions, and computational cost in terms of CPU time. The directional maximum technique offers a very good compromise between mean absolute error and correct detection rate, with a processing time less than one-tenth of a second. Compared to the existing techniques, the directional maximum method is also superior in range accuracy and in eliminating artifacts, resulting in the best overall performance. The results indicate several trade-offs in the choice of ultrasonic arc-map processing techniques. © 2007 SAGE Publications.
机译:提出了一种用于处理超声波弧图的新技术,并将其与六种现有的用于地图构建的技术进行了比较。这些技术是沿视线进行的简单点标记,投票和阈值处理,形态处理,占用网格的贝叶斯更新方案,弧横向中值算法和基于三角剖分的融合。本文新提出的定向最大技术,采用定向处理从超声电弧图提取环境图。它旨在克服地图构建中超声波传感器的固有角度不确定性,并消除与噪声和串扰相关的误读。比较的技术是通过墙面跟随运动计划方案来实现的。比较是基于实验数据和三个互补错误标准:平均绝对错误,对完整和空白区域的正确检测率以及就CPU时间而言的计算成本。定向最大技术在平均绝对误差和正确检测率之间提供了很好的折衷,处理时间不到十分之一秒。与现有技术相比,最​​大定向方法在范围精度和消除伪影方面也更出色,从而获得了最佳的整体性能。结果表明,在选择超声弧图处理技术时需要权衡取舍。 ©2007 SAGE出版物。

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    Barshan, B.;

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  • 年度 2007
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