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A remote engineering solution for automating a roller hearth kiln

机译:辊道窑自动化的远程工程解决方案

摘要

Remote engineering (also known as online engineering) may be defined as a combination of control engineering and telematics. In this area, specific activities require computacional skills in order to develop projects where electrical devives are monitored and / or controlled, in an intercative way, through a distributed network (e.g. Intranet or Internet). In our specific case, we will be dealing with an industrial plant.Within the last few years, there has been an increase in the number of activities related to remote engineering, which may be connected to the phenomenon of the large extension experienced by the Internet (e.g. bandwith, number of users, development tools, etc.). This increase opens new and future possibilities to the implementation of advance teleworking (or e-working) positions. In this paper we present the architecture for a remote application, accessible through the Internet, able to monitor and control a roller hearth kiln, used in a ceramics industry for firing materials. The proposed architecture is based on a micro web server, whose main function is to monitor and control the firing process, by reading the data from a series of temperature sensors and by controlling a series of electronic valves and servo motors. This solution is also intended to be a low-cost alternative to other potential solutions. The temperature readings are obtained through K-type thermopairs and the gas flow is controlled through electrovalves. As the firing process should not be stopped before its complete end, the system is equipped with a safety device for that specific purpose. For better understanding the system to be automated and its operation we decided to develop a scale model (100:1) and experiment on it the devised solution, based on a Micro Web Server.
机译:远程工程(也称为在线工程)可以定义为控制工程和远程信息处理的组合。在该领域中,特定活动需要计算能力,以便开发项目,通过分布式网络(例如Intranet或Internet)以交互方式监视和/或控制电气设备。在我们的特定情况下,我们将与一个工业工厂打交道。在过去的几年中,与远程工程相关的活动数量有所增加,这可能与Internet经历的大规模扩展现象有关(例如带宽,用户数量,开发工具等)。这种增加为高级远程办公(或电子办公)职位的实施开辟了新的和未来的可能性。在本文中,我们介绍了一种可通过Internet访问的远程应用程序的体系结构,该体系结构能够监视和控制用于陶瓷工业中烧制材料的辊道式窑。所提出的体系结构基于微型Web服务器,其主要功能是通过读取一系列温度传感器的数据以及控制一系列电子阀和伺服电机来监视和控制点火过程。该解决方案还旨在成为其他潜在解决方案的低成本替代方案。通过K型热电偶获得温度读数,并通过电动阀控制气体流量。由于不应在完全结束点火过程之前停止点火,因此该系统配备了用于该特定目的的安全装置。为了更好地了解要自动化的系统及其操作,我们决定开发一个比例模型(100:1),并基于Micro Web Server在设计的解决方案上进行实验。

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