化工锅炉自动化装置关键参数的控制与分析

C. Behera, S. M. Patil, S. K. Mishra, G. Reddy, A. Goswami
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引用次数: 0

摘要

锅炉在加工工业,特别是化学工业中起着重要的作用。它需要适当地采用控制技术来提供精确的温度、压力、蒸汽和水流来生产化学品。不受控制的锅炉可以使整个过程停止。因此,它需要一个连续的监测系统来避免这种关闭。在过去的几十年里,继电器逻辑、嵌入式或过程卡系统被用于锅炉系统的控制。在传统的系统中,由于过程卡只使用一次,控制方案对于故障排除也很复杂。为了克服这类问题,监控和数据采集(SCADA)和可编程逻辑控制器(PLC)系统有助于从各种传感器收集有关锅炉流量的数据和信息。本文采用比例积分导数(PID)控制,利用SCADA和PLC辅助控制关键参数。本文所采用的PID控制器是根据锅炉运行的需要进行编程的,并可通过SCADA系统进行数据的存储和分析。本文的结果有助于工业人员进行锅炉自动化,使工厂操作员能够观察到提高锅炉效率和减少经济损失的关键参数。
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Control and analysis of crucial parameters for an automatic boiler unit in a chemical industry
A boiler plays a significant role in a processing industry, particularly in chemical industry. It requires proper adoption of control techniques for supplying accurate temperature, pressure, steam, and water flow to produce chemicals. An uncontrolled boiler can shut down the whole process. Therefore it requires a continuous monitoring system for avoiding such shutdown. In the past few decades, relay logic, embedded or process card systems were used for controlling the boiler system. In the conventional system, the controlling scheme was also complex for troubleshooting because process cards are used only once. In order to overcome this type of problem Supervisory Control and Data Acquisition (SCADA) and Programmable Logic Controller (PLC) system helps to collect data and information about the flow of boiler from various sensors. In this paper, SCADA and PLC assist in controlling crucial parameters using Proportional Integral Derivative (PID) control. PID controller used in this paper is programmed according to the boiler operation's need, and the data can be stored and analyzed using the SCADA system. The results in this paper help the industrial personnel for boiler automation, allowing the plant operator to observe the crucial parameters for increasing boiler efficiency and reducing the financial losses. 
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