基于物联网的机器人汽车多运动控制系统,产生云服务

Maliha Rahman Mishi, Rabeya Bibi, Tanveer Ahsan
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引用次数: 7

摘要

控制世界是一个令人兴奋的领域,随着新技术的发展,物联网(IoT)的愿景成为现实。本文提出了一种以树莓派为主、Arduino UNO为从的机器人汽车多运动控制机制。每个设备都是由控制软件唯一识别的,这是物联网的核心概念。客户通过互联网通过语音命令和通用Windows应用程序从远程或遥远的地方管理汽车的活动,并能够获得数据和反馈。本文的主要贡献是利用了机器人运动控制系统的效率,因为机器人汽车可以同时接收来自多个源的直接命令,从而提高了机动系统的效率。设备和客户端不需要同时在线。命令和数据存储在云服务中,当设备准备好接收时,云服务就会发送命令和数据。装有GPS系统,因此客户可以追踪车辆。该系统有超声波距离传感器,以避免在其路径之间的障碍物。介绍了树莓派和Arduino通信软件的架构和设计,并说明了如何通过命令和应用程序来控制汽车。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple motion control system of robotic car based on IoT to produce cloud service
The world of control is an exciting field that has exploded with new technologies where the Internet of Things (IoT) vision becomes reality. This paper proposes a multiple motion controlling mechanism of a robotic car using Raspberry Pi which works as master and Arduino UNO which works as slave. Each device is uniquely identifiable by the controlling software which is the core concept of IoT. Client manages the activities of the car from remote or distant places over the internet by voice commands and Universal Windows Application and also able to get data and feedback. The main contribution of this paper is that it leverages the efficiency of robot's motion controlling system because robotic car can receive direct commands at a time from multiple sources which make the maneuvering system more efficient. Both device and client do not need to be online at the same time. Commands and data are stored in cloud service which delivers them when the device is ready to receive. A GPS system is incorporated thus clients can trace the car. The system has ultrasonic distance sensor for avoiding obstacles coming in between its path. We present the architecture and design of the Raspberry Pi and Arduino communication software and illustrate how to control the car by means of commands and application.
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