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A new wireless asynchronous data communications module for industrial applications

机译:面向工业应用的新型无线异步数据通信模块

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摘要

All the sensors such as temperature, humidity, and pressure used in industry provide analog outputs as inputs for their control units. Wireless transmission of the data has advantages on wired transmission such as USB port, parallel port and serial port and therefore has great importance for industrial applications. In this work, a new wireless asynchronous data communications module has been developed to send the earth magnetic field data around a ferromagnetic material detected by a KMZ51 AMR sensor. The transmitter module transmits the analog data obtained from a source to a computer environment where they are stored and then presented in a graphical form. In this design, an amplitude shift keying (ASK) transceiver working at the frequency of 433.92 MHz which is a frequency inside the so called Industrial Scientific Medical band (ISM band) used for wireless communications. The analog data first fed into a 10-bit ADC controlled by a PIC microcontroller and then the digital data is sent to the transmitter. A preamble bit string is added in front of the data bits and another bit string for achieving synchronization and determination the start of the data is used. The data arriving at the receiver is taken by the microcontroller and sent to a LCD display as well as the serial port of a computer where it is written in a text file. A Visual Basic based graphics interface is designed to receive, store and present the data in the form of graphical shapes. In the paper, all the work has been explained in detail. © 2013 Published by Elsevier Ltd. All rights reserved.
机译:工业上使用的所有传感器(例如温度,湿度和压力)都将模拟输出作为其控制单元的输入。数据的无线传输在有线传输(例如USB端口,并行端口和串行端口)上具有优势,因此对于工业应用非常重要。在这项工作中,开发了一种新的无线异步数据通信模块,用于在由KMZ51 AMR传感器检测到的铁磁材料周围发送地磁场数据。发送器模块将从源获得的模拟数据发送到计算机环境,在计算机环境中存储它们,然后以图形形式显示。在这种设计中,一个振幅移位键控(ASK)收发器的工作频率为433.92 MHz,该频率是用于无线通信的所谓工业科学医学频段(ISM band)内的频率。模拟数据首先馈入由PIC微控制器控制的10位ADC,然后将数字数据发送至发送器。在数据比特的前面添加一个前导比特串,并使用另一个比特串实现同步并确定数据的开始。到达接收器的数据由微控制器获取,并发送到LCD显示器以及计算机的串行端口,并在其中写入文本文件。基于Visual Basic的图形界面旨在以图形形状的形式接收,存储和呈现数据。在本文中,已经详细解释了所有工作。 ©2013 Elsevier Ltd.出版。保留所有权利。

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