批处理无线嵌入式自动化系统的开发

V. Kadam, S. Jadhav, Mahesh Parihar, Amit Karande
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引用次数: 1

摘要

当前工业自动化发展迅速,强调集中监控和子系统独立控制。这增加了需要中间通信的远程子系统的数量。观察到的另一个挑战是系统尺寸的减小和操作灵活性的维护成本。规范的、重复的顺序控制和联锁是批处理执行和安全的典型强制性要求。本文介绍了间歇式工艺实验装置无线控制与监测的原型系统的开发与分析。提出了利用ARM单片机对温度和液位进行实时监测和控制的方法。一个使用Visual Studio的图形用户界面。NET开发用于远程操作工厂。这便于用户通过ZigBee协议在实验室设置和用户界面之间通过无线通信进行控制、监督和数据采集。基于RTD和液位传感器标定的合理线性度,对RTD输出和超声波液位传感器输出进行了灵敏度和线性度分析。此外,还研究了ADC计算和观测输出的误差。考虑到温度和液位传感器故障的可能性,已经确定、执行和验证了正常操作和安全联锁,以减轻工厂中的危险事件。所提出的系统开发成功,并按规定的方式工作,总体性能令人满意。
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Development of wireless embedded automation system for batch process
Presently industrial automation is growing rapidly emphasizing on centralized monitoring and independent control of sub-systems. This increases the number of remote sub-systems, which need intermediate communication. Another challenges observed are the reduction of system size and the maintenance cost with flexibility in operation. Regulatory, repetitive sequential control and interlocking are the typical mandatory requirements for batch execution and safety. This paper presents development and analysis of prototype system for wireless controlling and monitoring of the batch process experimental set-up. It proposes the efficient utilization of ARM micro-controller for the real-time monitoring and control of temperature and level. A graphical user interface using Visual Studio.NET is developed to operate the plant remotely. This facilitates the user to control, supervision and data acquisition through wireless communication between laboratory set-up and user interface via ZigBee protocol. Sensitivity and linearity analysis of RTD output and ultrasonic level sensor output is carried out citing fair linearity of RTD and level sensors calibration. Additionally errors in calculated and observed output at ADC are also investigated. The normal operation and safety interlocks have been identified, executed & validated to mitigate the hazardous events in plant considering the possibility of failure of temperature and level sensors. The proposed system is developed successfully and works in defined manner with overall satisfactory performance.
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