避障
机器人
阿杜伊诺
微控制器
障碍物
人工智能
超声波传感器
计算机科学
机器人学
避碰
移动机器人
智能传感器
背景(考古学)
实时计算
计算机视觉
嵌入式系统
控制工程
工程类
无线传感器网络
碰撞
计算机安全
计算机网络
古生物学
物理
政治学
声学
法学
生物
作者
Tanjim Mahmud,Israt Ara,Rishita Chakma,Koushick Barua,Dilshad Islam,Mohammad Shahadat Hossain,Anik Barua,Karl Andersson
标识
DOI:10.1109/icict4sd59951.2023.10303550
摘要
This study focuses on the development of an obstacle avoidance robot controlled by an ultrasonic sensor. The robot utilizes robotics and artificial intelligence techniques to improve obstacle avoidance and enhance safety in various scenarios, particularly in the context of road accidents. The system incorporates an Arduino microcontroller and ultrasonic sensors that detect obstacles within the robot's path. By processing the sensor data, the microcontroller employs artificial intelligence algorithms to predict the presence of obstacles in real-time. The ultrasonic sensor is strategically positioned at the front of the robotic vehicle, continuously gathering data from the surrounding area. When an obstacle is detected, the robot autonomously adjusts its direction to avoid collision. The sensor relays the collected data to the microcontroller, which then determines the appropriate movement and direction for the robot's wheels. Consequently, the robot built with our approach is satisfactorily able to detect obstacles and avoid them, with a remarkable accuracy rate of 84%. This proactive approach to obstacle detection and avoidance aims to prevent potential accidents and promote safer navigation. The obstacle avoidance robot serves as a practical solution for detecting and avoiding obstacles, with potential applications in various domains. By combining robotics, artificial intelligence, and sensor technologies, this study contributes to the development of intelligent systems capable of autonomously navigating their environment while ensuring safety.
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