运动目标检测用超声雷达与适当的距离,方向,和目标形状分析

A. Biswas, Sabrina Abedin, Md. Ahasan Kabir
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引用次数: 4

摘要

背景:在其早期发展中,雷达(无线电探测和测距)主要用于海军、军队和航空服务,以及用于安全和监测目的的空间组织。如今,雷达的需求在不断扩大。为了克服雷达的局限性,已经进行了研究。目的:研究当前移动物体检测的局限性之一。本文旨在填补文献空白,利用雷达系统对运动物体进行识别,同时捕捉距离、方向、雷达脉冲持续时间和物体形状。速度或物体接近或远离雷达的速度通过使用算法来确定,以获得精度。方法:通过实际测量值与雷达测量值的比较,确保距离测量和角度测量的准确性。所研究的对象包括金属和非金属。这项工作的新颖之处在于,仅使用一个Arduino UNO和一个超声波传感器,就可以使用合适的算法准确检测运动物体。结果:实验设计的效率明显高于以往的设计。该方法预测了雷达系统探测到的目标的准确速度。实验成功地验证了运动目标传感器的精度。结论:除了适当的距离和速度外,还需要大量的数据来寻找雷达对不同形状物体的精度。对于圆柱形物体,当物体距离5厘米时,雷达在恒定环境中提供100%的效率。当距离为17 cm时,精度降至30%。该系统的局限性是它无法检测到小物体或物体非常近(1厘米)。
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Moving Object Detection Using Ultrasonic Radar with Proper Distance, Direction, and Object Shape Analysis
Background: In its early development, radar (radio detection and ranging) was primarily used by the navy, the military, and the aviation services, as well as space organizations for security and monitoring purposes. Nowadays, the demand of radar is expanding. Research has been conducted to overcome the limitations of radar.Objective: One of the current limitations to detect moving object. The current paper aims to fill the gap in the literature by using a radar system in the identification of moving object, capturing the distance, direction, radar pulse duration and object shape simultaneously. Velocity or the object’s speed towards or away from the radar was determined by using an algorithm to obtain the precision.Methods: The accuracy of distance measurement and angle is ensured by comparing the real values and the values obtained by the radar. The objects under study consist of metal and non-metal. Novelty of this work is the accurate detection of moving objects with suitable algorithms using only one Arduino UNO and one ultrasonic sensor.Results: The experiment design yielded much better efficiency than previous works. The proposed method predicted the exact speed of the object detected by the radar system. The experiment has successfully proven the accuracy of moving object sensor.Conclusion: Besides proper distance and velocity, a large set of data was taken to find the accuracy of the radar for objects of different shapes. For a cylindrical object, the radar provided 100% efficiency in a constant environment when the object was 5 cm away. The accuracy decreased to 30% when the distance was 17 cm away. The limitation of this system is that it was unable to detect small object or if the object was very close (1 cm).
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