基于物联网的汽包串级液位流量控制系统原型

A. K. Dewi, Andhika Darussalam, Pujianto Pujianto, Chalidia Nurin Hamdani, Natasya Aisah Septiani
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引用次数: 0

摘要

在工业领域中,锅炉的功能是加热水形式的流体,锅炉具有作为汽包的部件,该部件具有产生用于公用事业需要的蒸汽的功能,而蒸汽轮机在实践中,水位的状态必须保持在期望值或设定值。点,这样就不会发生结转,在克服这些问题时,需要一个控制系统。这种控制通过比较传感器的值和设定值来工作,然后给出一个输出信号来校正该值以加快响应,因此有必要使用级联控制配置,该配置添加了一个输入流量控制作为从属控制。在这个原型中,级联液位控制用于控制液位过程。此外,还设计了人机界面来实时监控流程。此外,该原型配备了物联网系统,只要始终连接到互联网,该系统就可以用于监控过程。为了运行控制系统,需要进行参数控制,本项目PID参数设置采用Ziegler-Nichols方法,参数Kp水平=20.25;Ki水平=1.51;Kp流量=5.14;Ki流量=2.2。
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Prototype of cascade level and flow control system on steam drum based on IoT
In the industrial field, boiler functions to heat a fluid in the form of water, the boiler has a part which is a steam drum which has a function to produce steam for use for utility needs, and a steam turbine, in practice, the state of the water level must be maintained at the desired value or set. point so that carryover does not occur, and in overcoming these problems a control system is needed. This control works by comparing the value of the sensor and the set point, then gives an output signal to correct that to speed up the response, so it is necessary to use a cascade control configuration that adds an input flow control as a slave control. In this prototype, the cascade level control serves to control the level process. In addition, the human-machine interface has been designed to monitor processes in real-time. In addition, this prototype is equipped with an Internet of Things system that functions for the monitoring process as long as it is always connected to the internet. To run the control system, parameter control is needed, in this project the PID parameter setting uses the Ziegler-Nichols method with the parameter Kp level=20.25; Ki level = 1.51; Kp Flow = 5.14; Ki flow = 2.2.
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发文量
47
审稿时长
6 weeks
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