M. A. Hairuddin, Nur Dalila Khirul Ashar, A. F. Z. Abidin, N. Tahir
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引用次数: 2
摘要
迄今为止,研究工作已经证明,他们的实验室对基于物联网(IoT)的监测设备的需求受到刺激。远程实验室在克服时间限制方面的好处和传统实验室可用性的缺点是众所周知的。除了现有的控制工程实验室外,还建立了一个包含行业相关方法的远程实验室,以帮助理解具有成本效益的平台集成的数据采集。然而,最大的挑战之一是创建一个低成本和用户友好的远程实验室实验,它是通过移动设备与实际实验室交互的理想选择。因此,这项工作的主要目标是使用LabVIEW-Arduino接口构建一个基于物联网的远程实验室系统,并以比例-积分-导数(PID)调谐方案为例,用于lcd - didactic温度工厂。实际工作将包括实现将实际工厂连接到移动设备的低成本Arduino模块。此外,已经使用Blynk应用程序构建了接口,以允许最终用户和实验室设备之间的通信。与工业革命4.0 (IR 4.0)相一致,拟议的研究结构要求将当前的实验室实验方法数字化。
Cost-Effective Interfaces with Arduino-LabVIEW for an IOT-Based Remote Monitoring Application
To date, research efforts have demonstrated the stimulated need for the Internet of Things (IoT) based monitoring device in their laboratory. The benefits of remote laboratories in overcoming time constraints and the disadvantages of usability of conventional laboratories are well known. In addition to the current control engineering laboratories, a remote lab that incorporates an industry-relevant method has been established to assist in the understanding of data acquisition with cost-effective platform integration. However, one of the greatest challenges is the creation of a low-cost and user-friendly remote laboratory experiment that is ideal for interacting with the actual laboratory via a mobile device. The main objective of this work is therefore to build a remote laboratory system based on the IoT using the LabVIEW-Arduino interface with the example of proportional-integral-derivative (PID) tuning scheme for the LD-Didactic temperature plant. The practical work would include the implementation of the low-cost Arduino module connecting the actual plant to mobile devices. In addition, interfaces have been built using the Blynk application to allow communication between the end user and the laboratory equipment. In line with the Industrial Revolution 4.0 (IR 4.0), the proposed study structure called for the digitization of the current laboratory experiment method.