为EN13757-3中定义的有线计量总线(M-Bus)开发基于web的监控设备

Thomas Matt, Manuel Schappacher, A. Sikora
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引用次数: 3

摘要

计量总线,也称为M总线,是欧洲标准EN13757-3,用于读出计量设备,如电,水,气或热表。尽管现实生活中的M总线网络可以达到相当大的规模和复杂性,但只有非常简单的协议分析器可用。因此,开发人员和安装人员没有一个简单和低成本的可能性来分析真实的总线信号。这导致了基于web的M总线监控工具的设计和实现,以及用于测量和记录总线信号的物理总线接口。因此,首先设计了一种电路,将电压和电流调制的M-Bus信号转换成电压信号,该信号可由标准的模数转换器(ADC)读出。一旦捕获,总线信号通过web服务器显示,该服务器进一步分析和分类帧片段。作为一个附加功能,示波器功能包括在工具中。这使得该分析仪成为一个具有高兼容性和灵活性的强大工具。这一贡献集中在接口电路的发展,以读取有线m总线和如何恢复数据。本文描述了M-Bus嗅探器设计的一般概念,以及有关实现和底层信号处理的一些细节。实现分为两个主要部分:嗅探器驱动程序在硬件和软件上的实现,以及该驱动程序对包括用户界面在内的现有头单元的适应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a web-based monitoring device for the wired Metering Bus (M-Bus) as defined in EN13757-3
The Metering Bus, also known as M Bus, is a European standard EN13757-3 to read out metering devices, like electricity, water, gas or heat meters. Although real-life M Bus networks can reach a significant size and complexity, there are only very simple protocol analyzers available. Therefore developers and installers do not have an easy and low cost possibility to analyze real bus signals. This led to the design and implementation of a web-based monitoring tool for the M Bus together with a physical bus interface to measure and records the bus signals. Therefore, in the first place a circuit was designed, which transforms the voltage and current modulated M-Bus signals to a voltage signal, which can be read out by a standard Analog-Digital-Converter (ADC). Once captured, the bus signals are displayed using a web server, which furthermore analyzes and classifies the frame fragments. As an additional feature an oscilloscope functionality is included into the tool. This makes the analyzer a powerful tool with high compatibility and flexibility. This contribution concentrates on the development of an interface circuit to read the Wired M-Bus and how the data can be regained. This article describes the general concepts from the design of the M-Bus sniffer as well as some details about the implementation and the underlying signal processing. The implementation is divided into two major parts: The implementation of the Sniffer-Driver both in hardware and software and the adaption of this driver to an existing head unit including the user interface.
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