首页|基于视觉几何组网络的电力设备温室气体排放监测研究

基于视觉几何组网络的电力设备温室气体排放监测研究

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为了对电力行业的温室气体排放进行准确的监测,研究设计了一种结合吸收光谱和计算机技术的监测方法.过程中获取温室气体的吸收光谱并生成曲线图像,之后通过对曲线图像进行分析,统计得到气体排放的数据监测结果.实验结果表明,在进行计算时延分析时,研究方法在 500 条监测数据的计算中,计算时延最高仅为 32 ms;在数据体积分析中,研究方法在气体种类数达到8 种时产生的数据体积最高仅为180 Mb.说明研究方法能够有效对温室气体的吸收光谱进行生成,在进行电力设备温室气体排放监测时能够有效通过气体光谱数据获取气体组成数据,进而有效地进行电力设备温室气体排放监测,研究方法能够为电力行业相关的环保问题提供一定的技术参考.
Monitoring Greenhouse Gas Emissions from Power Equipment Based on Visual Geometry Group Network
In order to accurately monitor greenhouse gas emissions in the power industry,a monitoring method combining absorp-tion spectroscopy and computer technology was studied and designed.During the process,the absorption spectrum of greenhouse gases is obtained and curve images are generated.Then,by analyzing the curve images,the data monitoring results of gas emissions are sta-tistically obtained.The experimental results show that when conducting computation delay analysis,the research method only has a maximum computation delay of 32ms among 500 monitoring data calculations;In data volume analysis,the research method produces a maximum data volume of only 180Mb when the number of gas types reaches 8.The research method can effectively generate the ab-sorption spectrum of greenhouse gases,and obtain gas composition data through gas spectrum data when monitoring greenhouse gas e-missions from power equipment,thereby effectively monitoring greenhouse gas emissions from power equipment.The research method can provide certain technical references for environmental protection issues related to the power industry.

electricitygreenhouse gasesabsorption spectrummonitorVGG network

王昕、王宏、宋禹飞、窦如婷、秦高原

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南方电网科学研究院有限责任公司,广州 510663

中国南方电网有限责任公司,广州 510663

电力 温室气体 吸收光谱 监测 VGG网络

2024

自动化与仪器仪表
重庆工业自动化仪表研究所,重庆市自动化与仪器仪表学会

自动化与仪器仪表

CSTPCD
影响因子:0.327
ISSN:1001-9227
年,卷(期):2024.(11)