Lab-scale Combustion Control Setup for Test and Implementation of Control Algorithms

R. Yavari, Javad Davazdah Emami, I. Izadi
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Abstract

Boilers have many applications from residential and commercial heating to power generation and petrochemical plants. Better control of boilers reduces fossil fuel consumption and environmental pollution. In this paper, a manually operated lab-scale boiler is set up for automatic control and monitoring. Boiler variables are measured using machine vision techniques and added sensors, and then sent to a computer. An actuator delivers the control command to change air flow. A feedforward feedback control algorithm is then suggested to maintain the air/flow equivalence ratio, which is shown to be a suitable indicator for better efficiency and less pollution. Experimental results are presented to support the performance of the control mechanism.
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用于测试和实现控制算法的实验室规模燃烧控制设置
锅炉有许多应用,从住宅和商业供暖到发电厂和石化厂。更好地控制锅炉,减少化石燃料消耗和环境污染。本文建立了一个人工操作的实验室规模锅炉,用于自动控制和监测。锅炉变量使用机器视觉技术和附加传感器进行测量,然后发送给计算机。执行器发出控制命令来改变空气流量。然后,提出了一种前馈反馈控制算法,以保持空气/流量等效比,这是一个更好的效率和更少污染的合适指标。实验结果支持了该控制机构的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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