Abstract

Wireless multi-point real-time environmental monitoring system based on LabVIEW is composed of three parts: wireless environment information collection node, communication gateway, and host computer monitoring system. The purpose of this study is to explore the application of wireless monitoring technology in industry. Since that it is at the stage of research feasibility, various sensors used for the applications select the level limited to the ordinary teaching using sensor. AGV uses vehicle manipulator developed by Wuhan Depushi Technology Company and some sensors are simulated. The results of simple basic experiments showed that the wireless module can achieve point to multipoint communication. It is concluded that the monitoring interface can simultaneously process the data of a simulated pipeline terminal node with a simulated AGV data and make them work in a closed loop state.

Highlights

  • In the manufacturing field, the application of the sensor is quite common, and it is difficult to realize the intelligence without sensor

  • The wireless transmission function of the design is to achieve by making use of the XBee module, while AGV is to simulate with the use of vehicle manipulator and some sensors [2]

  • General Motor has installed an inventory tracking system based on wireless sensor networks, which can track the entire process from component suppliers to car buyers in real time

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Summary

Introduction

The application of the sensor is quite common, and it is difficult to realize the intelligence without sensor. It makes the intelligent equipment originally not linked to network become more intelligent. The focus of this design is to make AGV work automatically. Use the wireless network transmission AGV and the working state data of the pipeline terminal, and through the remote monitoring interface written by LABVIEW, process the data, which can make AGV become more intelligent. The wireless transmission function of the design is to achieve by making use of the XBee module, while AGV is to simulate with the use of vehicle manipulator and some sensors [2]. Compared to traditional industrial automation, the advantage of this design is that AGV can be used as a human being to decide when to call a control program to work, rather than just relying on the specified program to run mechanically

State of the art
Scheme design
Introduction to sensors
Fixed terminal node
Simulation AGV
System software design
Wireless module settings
Monitoring interface
Conclusion
Full Text
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