用双耳系统绘图

F. Moita, U. Nunes
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引用次数: 1

摘要

本文提出了一种具有探测和识别平面、边缘和角的双耳声纳结构。一种新的超快速发射方法,其捕获率是传统方法的4到6倍,显示出高抗干扰能力,保持非常低的误差水平。实验结果表明,该方法能够成功地抑制不希望的串扰,并能很好地接受真实的测量结果。该系统只需要两个发射周期,就能提供快速且更可靠的信息,从而提高障碍物检测概率。结合一种新的特征检测和识别算法,利用贝叶斯更新和分类规则构建在线特征地图。本文介绍了利用室内高光环境采集的数据进行超声反射器识别的实验结果。
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Mapping with a binaural system
A binaural sonar configuration with the capability to detect and identify planes, edges and corners is presented in this work. A new ultra-fast firing method with acquisition rates four to six times greater than the conventional ones, shows high interference rejection capabilities, preserving a very low level of errors. Experimental results have shown successful rejection of undesired crosstalk and good acceptance of true measurements. With just two firing cycles, this system provides fast and more confident information, leading to a higher obstacle detection probability. Together with a new feature detection and identification algorithms, on-line feature maps are built making use of the Bayesian updating and classification rules. Experimental results of ultrasonic reflectors recognition, using data collected in a specular indoor environment are presented in the paper.
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