基于能量平衡模型的电站锅炉燃烧模糊控制

A. Priyadharson, T. Rangaswamy
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引用次数: 0

摘要

为了在不同负荷条件下,通过调节适当的空气/燃料控制器,使火电厂汽轮机进口蒸汽压力保持在预定值,研制了一种新型燃烧控制器。设计了一种基于能量平衡模型的模糊控制器,在整个燃烧循环中保持适当的燃油流量。从能量平衡模型中导出任意时刻负荷对燃油流量的需求,并将其输入模糊控制器,实现对锅炉燃油流量的调节。同时,在任何时刻,相对于负载的气流要求是由空气/负载特性得出的。建立了实验室规模的实验装置,并采用传统的PID和基于能量平衡模型的模糊控制器进行了研究。通过火电厂实测数据验证了控制器的性能。强调了该方案相对于传统控制器的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Energy balance model based fuzzy controller for combustion of utility boiler
An innovative combustion controller is developed with an objective to maintain the steam pressure inlet to the turbine in a thermal power plant at a predetermined value by modulating proper air/fuel controller under varying load conditions. An energy balance model based fuzzy controller is designed to maintain proper fuel flow throughout the combustion cycle. The fuel flow requirement with respect to load at any instant is derived from energy balance model is fed to fuzzy controller to regulate the fuel flow to the boiler. At the same time air flow requirement with respect to load at any instant is derived from air/load characteristics. A lab scale experimental setup was fabricated and studies were carried out using conventional PID and the proposed energy balance model based fuzzy controller. Data was obtained from the thermal power plants to validate the controller's performance. The advantages of the proposed scheme over the conventional controller are highlighted.
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