首页|基于能源设备的空-地立体化协同碳流分析研究

基于能源设备的空-地立体化协同碳流分析研究

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为了有效确保二氧化碳含量监测的实时性、准确性和全面性,并探究影响二氧化碳含量的因素,设计基于能源设备的空-地立体化协同碳排放监测系统.搭建地面和空中两种二氧化碳监测环境,利用地面传感器获取排放口碳数据,利用无人机搭载传感器获取空间内二氧化碳特征信息.通过Pearson相关系数法探究二氧化碳含量与环境因素之间的关联性,并融合空-地数据进行碳流分析.实验结果表明,该系统能较好地反映空间内二氧化碳含量的分布,具备较好的实时性、准确性和全面性.
Research on the Analysis of 3D Air-ground Coordination Carbon Flow Based on Energy Equipment
To ensure real-time,accurate,and comprehensive carbon dioxide context monitoring and explore factors affecting carbon dioxide context,a 3D air-ground coordination carbon emission monitoring system is designed based on energy equip-ment.Two kinds of carbon dioxide monitoring environments are built,the ground sensor is used to obtain carbon data at the e-mission port,and the UAV is equipped with sensors to obtain carbon dioxide characteristics in the space.Pearson correlation coefficient method is used to explore the correlation between carbon dioxide content and environmental factors,and carbon flow analysis is carried out by integrating open space data.The experimental results show that the system can reflect the distribution of carbon dioxide context in space well,and has good real-time,accuracy and comprehensiveness.

carbon emissionscarbon dioxide sensorUAVair-ground coordinationcarbon monitoring

刘继彦、李延真、公维帅、鞠文杰、王者龙、王凌晨

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国网山东省电力公司,山东,济南 250001

国网山东省电力公司青岛供电公司,山东,青岛 266000

复旦大学,信息科学与工程学院,上海 200438

碳排放 二氧化碳传感器 无人机 空-地协同 碳监测

国家电网总部管理科技项目

5100-202116567A-0-5-SF

2024

微型电脑应用
上海市微型电脑应用学会

微型电脑应用

CSTPCD
影响因子:0.359
ISSN:1007-757X
年,卷(期):2024.40(5)