Forward model for sonar maps produced with the Polaroid ranging module

R. Kuc
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引用次数: 28

Abstract

Conventional Polaroid time-of-flight (TOF) sonars provide object range measurements, but their wide beam widths limit the object bearing accuracy. We describe a first-order model that predicts the TOF readings from an object at a given range, bearing, and reflecting strength produced by the Polaroid 6500 series sonar ranging module connected to a 600 series electrostatic transducer. The model provides a simple method for solving the inverse problem of estimating these object parameters from conventional TOF data. Experimental results are given to demonstrate the model performance. Our model provides a reasonable fit for main-lobe data observed for objects with reflecting strengths that vary by 25 dB. An example of an inverse problem solution demonstrates the model can improve object range and bearing measurements, and can also estimate the object reflecting strength, a landmark feature useful for robot navigation tasks.
用宝丽来测距模块制作的声纳地图正演模型
传统的宝丽来飞行时间(TOF)声纳提供目标距离测量,但其宽波束宽度限制了目标方位精度。我们描述了一个一阶模型,该模型预测了宝丽来6500系列声纳测距模块与600系列静电换能器连接产生的给定范围、方位和反射强度下物体的TOF读数。该模型为解决从常规TOF数据中估计这些目标参数的反问题提供了一种简单的方法。实验结果验证了模型的性能。我们的模型为反射强度变化为25 dB的物体观测到的主瓣数据提供了合理的拟合。一个反问题解的例子表明,该模型可以改善物体的距离和方位测量,还可以估计物体的反射强度,这是机器人导航任务的一个重要特征。
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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