Obstacle Avoidance Gloves for the Blind Based on Ultrasonic Sensor

Ruochuan Zhou
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引用次数: 1

Abstract

Ranging based on the reflection principle of ultrasonic wave propagating in the air has been widely used in modern life, such as car reversing radar, robot automatic obstacle avoidance etc. Aiming at the situation that the blinds have no way to know whether there are obstacles or big safety risks in front of them when they are walking, this paper designed obstacle avoidance gloves for the blinds based on ultrasonic sensors. With Arduino Nano single chip microcomputer as main controller, combined with ultrasonic sensor module, bluetooth module and speaker module, the glove realized the function of obstacle detection and alarm. The main working principle is by using the ultrasonic sensors to transmit and receive ultrasonic, the time difference for transmitting and receiving to detect the distance of obstacles ahead. Besides, by means of voice module output audio signals with different frequency according to the obstacle distance, the blinds can judge the distance between them to the obstacles based on the sound with different frequencies they heard. In this way, they can make responses in advance to avoid the obstacles ahead and the happening of the risk.
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基于超声传感器的盲人避障手套
基于超声波在空气中传播的反射原理的测距在现代生活中得到了广泛应用,如汽车倒车雷达、机器人自动避障等。针对百叶窗在行走时无法知道前方是否有障碍物或存在较大安全风险的情况,本文设计了一种基于超声波传感器的百叶窗避障手套。该手套以Arduino Nano单片机为主控制器,结合超声波传感器模块、蓝牙模块和扬声器模块,实现了障碍物检测和报警功能。其主要工作原理是利用超声波传感器发射和接收超声波,利用发射和接收的时间差检测前方障碍物的距离。此外,通过语音模块根据障碍物距离输出不同频率的音频信号,百叶窗可以根据听到的不同频率的声音来判断它们与障碍物的距离。通过这种方式,他们可以提前做出反应,避免前方的障碍和风险的发生。
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