多任务蜘蛛六足机器人

Md. Imran Uddin, M. Alamgir, Joydeep Chakrabarty, Md. Iqbal Hossain, Md. Arif Abdulla Samy
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引用次数: 2

摘要

六足机器人是一种蜘蛛机器人,它使用六个机械肢来运动。它比轮式机器人更通用,可以穿越许多关键的地形区域。这个机器人被设计用来解决一些对人类来说非常困难和危险的关键问题。这个机器人可以通过任何危险的斜坡和地形区域。它可以爬上任何障碍物或物体,也可以在粗糙的表面上保持平衡。通过使用吸盘,它可以爬上任何建筑物。这个模型已经改进了攀登技术,相机系统(360°视图),行走角度和有效载荷。SOC(片上系统)已被用于控制监控受影响地震地区的摄像机,并通过视频捕捉镜头提供信息。例如,当六足机器人爬过受地震影响的地区时,摄像头将捕捉到影响的时刻,并在MQTT代理的帮助下在YouTube上进行直播。这个六足机器人可以在身体框架的顶部承载20磅的重量。与其他六足动物相比,这个六足动物模型的爬过障碍物的能力得到了改进。临界角攀爬是该机器人最重要的改进之一,它可以在60°左右的表面上平稳地行走,并且具有良好的平衡性。在危险地区,它可以通过红外传感器探测到黑暗和光明的表面,也可以通过声音传感器模块探测到声音,并到达地震,火灾事件发生的地方,以保障人类的安全。对该机器人进行了实用评估,应用效率在85%以上,并与其他研究进行了对比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multitasking Spider Hexapod Robot
A hexapod robot is a type of spider robot which uses six mechanical limbs for movements. It is more versatile than wheel robots and it can traverse many critical terrains areas. This robot has been designed to solve some critical problems which are manually very hard and risky for human beings. This robot can pass through any risky slope and terrain areas. It can climb any obstacle or object and balance on rough surfaces as well. By using suction cups, it can climb any buildings. This model has been improved for climbing techniques, camera system (360° view), walking angles and payload. SOC [System on Chip] has been used to control the camera for monitoring the affected earthquake area and give the information by video capturing footage. For instance, when the hexapod robot will climbing and walk through the affected earthquake areas, the camera will be capturing the affecting moment and broadcast by live streaming on YouTube with the help of the MQTT broker. This hexapod can carry the 20 lb load on its top of the body frame. Climbing over an obstacle has been improved for this hexapod model compared to other hexapods. Critical angle climbing is one of the most important improvements for this robot and it can walk smoothly near about 60° angles of the surfaces with a good balance. In risky areas, it can detect dark and light surfaces with the help of infrared sensors, as well as it can detect sound by using the sound sensor module and reach there for human safety purposes where an earthquake, fire incidents will occur. The robot was pragmatically assessed and above 85% efficiency for application, mechanism, and the system has been observed compared with other researches.
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