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低碳背景下火力发电电气自动化控制技术研究

Research on Automatic Control Technology of Thermal Power Generation Gas Under Low-carbon Background

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常规火力发电技术在搭建控制架构方面不准确,脱硝时间过长,以此来设计实现低碳背景下的火力发电电气自动化控制技术.首先将单元炉进行一体化统一,通过对实时动态信息汇总来设定自动化控制参数,接下来通过自动化控制参数来搭建动态模糊自动化控制架构,以此营造集成化驱动控制的行为并列出动态模糊自动化控制协议预设表.对其分析并设计集成控制结构大体流程图.完成以上操作可实现自动化控制低碳火力发电.以此提出对比实验,将自动化控制技术与人工控制火力发电和基于adbs技术控制火力发电在750m3和3000m3单元炉,其他条件相同的情况下,将脱硝时间进行对比,分析得出电气自动化控制技术在火力发电应用中具有更显著效果的结论.
Conventional thermal power generation gas technology is not accurate in building the control structure,and the denitration time is too long,so as to design and realize the automatic control technology of thermal power generation gas under the background of low carbon.First,the unit furnace is integrated,and the automatic control parameters are set by summarizing the real-time dynamic information.Next,the dynamic fuzzy automatic control architecture is built through the automatic control parameters,so as to create an integrated drive control behavior and list the dynamic fuzzy automatic control protocol preset table.Analyze it and design the general flow chart of the integrated control structure.Complete the above operation can achieve automatic control of low-carbon thermal power generation.According to the comparative experiment,the automation control technology and manual control of thermal power generation and adbs technology control of thermal power generation in 750m3 and 3000m3 unit furnace,under the same conditions,the denitration time is compared,and the conclusion that the electrical automation control technology has more significant effect in the application of thermal power generation.

Low-carbon backgroundThermal power generationElectrical automation control

孟国玉

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上海能源科技发展有限公司,上海市 200233

低碳背景 火力发电 电气自动化控制

2024

电气传动自动化
天水电气传动研究所

电气传动自动化

影响因子:0.2
ISSN:1005-7277
年,卷(期):2024.46(2)