MQTT based monitoring and control system for remote stations in automotive industry

Denis Ivanović, Josip Job, Marko Puntarić, M. Herceg
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Abstract

In this paper is presented implementation of a lightweight supervisory control and data acquisition system for remote test stations as a part of a larger test house in the automotive industry. It is necessary to allow remote set up and monitoring of the test stations, which means defining the structure of a system with numerous test stations as endpoints. The test stations are meant to be virtual machines but can be both virtual and physical machines. A communication protocol must be used that enables this within the organization’s network, regardless of actual distance and location. The parameters of the test stations to be monitored can be defined according to the needs and purpose. Even when creating your own tool, this function is not unique, i.e. on one test station parameters of operating system resources such as memory usage can be monitored, while on another test station logged-in users or running programs, reported system errors and others must be monitored. Data storage is one of the mandatory functions of this system. This process allows viewing data throughout history and more detailed analysis of events. There are numerous benefits that can be drawn and used from the data stored in the database. It is necessary to pay attention to the data stored as well as the scope and retention throughout history. The correct and secure setup of a database is one of the prerequisites for any serious system that processes data. Appropriate views should be created for users involved in the data monitoring process using all the elements mentioned so far. Creating a visually acceptable and easy-to-use interface that serves the main purpose is the final presentation of the entire system to users. A complete system leads to higher productivity, profitability and better organization of the company. It also allows project managers to better plan the use and occupancy of test stations. At any time, they have insight into the status of individual test stations, their activities and the processes taking place. The system must be designed to be easily expandable and flexible, depending on the number of test cells that need to be changed. Adding new test stations to the network and the communication channel should be quick and easy.
基于MQTT的汽车工业远程站监控系统
本文介绍了一种轻型远程测试站监控和数据采集系统的实现,该系统是汽车工业中大型测试中心的一部分。允许远程设置和监控测试站是必要的,这意味着定义一个系统的结构,有许多测试站作为端点。测试站应该是虚拟机,但也可以是虚拟机和物理机。无论实际距离和位置如何,必须使用能够在组织网络中实现这一点的通信协议。可根据需要和目的定义待监测试验站的参数。即使在创建您自己的工具时,该功能也不是唯一的,即在一个测试站上可以监视操作系统资源的参数,例如内存使用情况,而在另一个测试站上必须监视登录的用户或正在运行的程序,报告的系统错误等。数据存储是该系统的必备功能之一。此过程允许查看整个历史数据并对事件进行更详细的分析。可以从存储在数据库中的数据中提取和使用许多好处。必须注意所存储的数据以及历史上的范围和保留。正确和安全的数据库设置是任何处理数据的严肃系统的先决条件之一。应该使用到目前为止提到的所有元素,为参与数据监视过程的用户创建适当的视图。创建一个视觉上可接受且易于使用的界面是整个系统最终呈现给用户的主要目的。一个完整的系统可以提高公司的生产力、盈利能力和更好的组织。它还允许项目经理更好地计划测试站的使用和占用。在任何时候,他们都能洞察到单个测试站的状态、它们的活动和正在发生的过程。根据需要更改的测试单元的数量,系统必须设计得易于扩展和灵活。向网络和通信通道添加新的测试站点应该是快速和容易的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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