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Extending Smart Phone Based Techniques to Provide AI Flavored Interaction with DIY Robots, over Wi-Fi and LoRa interfaces

机译:扩展基于智能手机的技术,通过Wi-Fi和Lora接口提供与DIY机器人的AI调味互动

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摘要

Inspired by the mobile phone market boost, several low cost credit card-sized computers have made the scene, able to support educational applications with artificial intelligence features, intended for students of various levels. This paper describes the learning experience and highlights the technologies used to improve the function of DIY robots. The paper also reports on the students’ perceptions of this experience. The students participating in this problem based learning activity, despite having a weak programming background and a confined time schedule, tried to find efficient ways to improve the DIY robotic vehicle construction and better interact with it. Scenario cases under investigation, mainly via smart phones or tablets, involved from touch button to gesture and voice recognition methods exploiting modern AI techniques. The robotic platform used generic hardware, namely arduino and raspberry pi units, and incorporated basic automatic control functionality. Several programming environments, from MIT app inventor to C and python, were used. Apart from cloud based methods to tackle the voice recognition issues, locally running software alternatives were assessed to provide better autonomy. Typically, scenarios were performed through Wi-Fi interfaces, while the whole functionality was extended by using LoRa interfaces, to improve the robot’s controlling distance. Through experimentation, students were able to apply cutting edge technologies, to construct, integrate, evaluate and improve interaction with custom robotic vehicle solutions. The whole activity involved technologies similar to the ones making the scene in the modern agriculture era that students need to be familiar with, as future professionals.
机译:受到手机市场提升的启发,几台低成本信用卡大小的电脑已经取得了现场,能够支持人工智能特征的教育应用,适用于各级学生。本文介绍了学习体验,并突出了用于改善DIY机器人功能的技术。本文还报告了学生对这一经验的看法。参加基于这个问题的学习活动的学生尽管有弱的编程背景和受限时间表,试图找到改善DIY机器人车辆建设和更好地与之交互的方法。正在调查的情景案例,主要通过智能手机或平板电脑,从触摸按钮到姿态和语音识别方法利用现代AI技术。机器人平台使用了通用硬件,即Arduino和Raspberry PI单位,并纳入了基本的自动控制功能。使用了几个编程环境,从MIT App Inventor到C和Python。除了基于云的方法来解决语音识别问题,评估本地运行的软件替代方案以提供更好的自主权。通常,通过Wi-Fi接口执行场景,而通过使用LORA接口扩展了整个功能,以改善机器人的控制距离。通过实验,学生能够施加尖端技术,构建,整合,评估和改进与定制机器人车辆解决方案的互动。整个活动所涉及的技术类似于制造现代农业时代现场的技术,学生需要熟悉,作为未来的专业人士。

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