Determining 2D shape of object using ultrasonic sensor

Rechie Ranaisa Dam, Hridoy Biswas, Shuvrodeb Barman, Alvee Ahmed
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引用次数: 6

Abstract

Ultrasonic technology has been using for years. Different Ultrasonic sensors are used in homes, shops, to navigate, object detection and for what is known as map building. The aim of this work is to build an ultrasonic device which is basically one kind of a radar system to get exact distance and approximate 2D shape for fixed objects placed around the device based on trigonometric rules. Its uses distance of the Ultrasonic sensor with the trigonometric rules to get the shape of the object. Some sensors like laser or infrared are used to measure the distance of obstacles, and consequently enable a robot to take a decision depending on the obstacles, or lack of obstacles, around it. But they are sensitive to strong light sources containing a high level of infrared radiation, and also to the color of obstacles, cannot detect objects that reflect lasers (windows, chrome-plated objects, etc.). So we are building such kind of device that can detect the object that is neutral to high radiation and color of the object. Microcontroller, ultrasonic sensors and MATLAB software is used to achieve the aim. The result was a device that can show the approximate 2D shape in a dotted graph.
利用超声波传感器确定物体的二维形状
超声波技术已经使用多年。不同的超声波传感器被用于家庭、商店、导航、物体检测和所谓的地图构建。本工作的目的是建立一种超声波装置,它基本上是一种雷达系统,可以根据三角规则获得放置在装置周围的固定物体的精确距离和近似二维形状。它利用超声波传感器的距离和三角规则来获得物体的形状。激光或红外等传感器被用来测量障碍物的距离,从而使机器人能够根据周围的障碍物或缺乏障碍物做出决定。但它们对含有高水平红外辐射的强光源很敏感,对障碍物的颜色也很敏感,不能探测反射激光的物体(窗户、镀铬物体等)。所以我们正在建造这样一种设备,它可以探测到对高辐射和物体颜色中性的物体。利用单片机、超声波传感器和MATLAB软件实现了该目标。结果是一个可以在虚线图中显示近似二维形状的装置。
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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