物联网集成到CPM机器:一个高级设计项目中的简化模型研究

Supawadee Pattanapibulchai, Rachata Jittipronson, Dahmmaet Bunnjaweht
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引用次数: 0

摘要

这篇论文提出了一个案例,高年级设计项目的学生谁采取了电力选项。所选的主题与当前的电气工程趋势有关,而不是传统的电力设计。本项目旨在将物联网与应用软件开发相结合,以增强膝关节连续被动运动(CPM)机的操作能力。目标是建立一个基本的CPM机器,使物联网升级版本可以通过智能手机控制,在网络上收集,传输和存储物理治疗数据。为此,建立了CPM机床的简化模型。通过智能手机应用程序创建用户界面,供用户设置CPM机器的基本操作。该应用程序与通过电机驱动器调节机械运动的微控制器通信。轴向运动通过齿轮箱进行,齿轮箱根据设计速度将扭矩转换为推拉动作。一旦大腿和小腿支撑完成一个循环运动,一个限位开关被激活,然后一个控制信号被发送,开始通过互联网传输数据。数据存储在Google Sheets平台中。利用物联网技术和基于智能手机的用户界面被证明在满足主要目标和目的方面是成功的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An IoT Integration into a CPM Machine : An Investigation of a Simplified Model in a Senior Design Project
This paper presents a case of a senior design project conducted by students who took an electrical power option. The selected topic was related to current electrical engineering trends, rather than conventional electrical power design. This project aimed to combine the Internet of Things and application software development in order to enhance the operation of a knee continuous passive motion (CPM) machine. The goal was to build a basic CPM machine such that the IoT-upgraded version could be controlled by a smart phone, collect, transfer and store physical therapy data on the network. A simplified model of CPM ma-chine was built to serve such a purpose. A user interface was created via a smart phone application for the user to set up a basic operation of the CPM machine. This application communicated with a microcontroller that regulated the mechanical movement via the motor driver. The axial movement was operated through a gear box that converted torque to the push-and-pull operation according to the designed speed. Once the thigh and calf support completed a cycle movement, a limitswitch was activated and then a control signal was sent to initiate the data transferred through the Internet. The data were stored in the Google Sheets platform. The utilization of an IoT technology and a smart phone based user-interface was proven to be successful in satisfying the primary goals and objectives.
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