期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
受限区域空气环境探测吊舱系统的设计
1
作者 张帝 权悦 +2 位作者 汪婵 周小杰 国海 《曲阜师范大学学报(自然科学版)》 CAS 2022年第2期79-86,共8页
针对无法高效便捷地检测高空受限区域空气环境的问题,设计了受限区域空气环境探测吊舱系统,该系统以MT7620N芯片作为主控单元,搭载OpenWrt操作系统,设计北斗GPS定位模块、空气样本采集装置、多种空气参数探测传感器和视频采集装置.智能... 针对无法高效便捷地检测高空受限区域空气环境的问题,设计了受限区域空气环境探测吊舱系统,该系统以MT7620N芯片作为主控单元,搭载OpenWrt操作系统,设计北斗GPS定位模块、空气样本采集装置、多种空气参数探测传感器和视频采集装置.智能监测服务终端可实时查看受限区域的温度、湿度、烟雾浓度、PM2.5、PM10、现场视频及地理位置等信息.经测试,该系统可准确测量空气质量参数,通信距离能够达到150 m,通过搭载在旋翼机上的探测吊舱灵活探测高空某一区域内空气污染状况,从而为污染评估,决策预警和环境执法提供有力的数据支持与保障. 展开更多
关键词 空气环境探测 受限区域 MT7620N OpenWrt
下载PDF
FY-4 Meteorological Satellite 被引量:1
2
作者 DONG Yaohai CHEN Xiaojie +4 位作者 CHEN Qiang LYU Wang SHEN Junfeng CHE Lamei JIANG Feng 《Aerospace China》 2017年第2期31-39,共9页
FY-4 is the second generation of Chinese geostationary satellite for quantitative remote sensing meteorological application. The detection efficiency, spectral bands, spatial and time resolution have been greatly impr... FY-4 is the second generation of Chinese geostationary satellite for quantitative remote sensing meteorological application. The detection efficiency, spectral bands, spatial and time resolution have been greatly improved with respect to those of first generation, as well as the radiometric calibration and sensitivity. The combination of multichannel detection and vertical sounding was first realized on FY-4, because both the Advanced Geostationary Radiation Imager(AGRI) and Geostationary Interferometric Infrared Sounder(GIIRS) are on the same spacecraft. The main performance of the payloads including AGRI, GIIRS and Lightning Mapping Imager, and the spacecraft bus are presented, the performance being equivalent to the level of the third generation meteorological satellites in Europe and USA. The acquiring methods of remote sensing data including multichannel and high precision quantitative observing, imaging collection of the ground and cloud, vertical observation of atmospheric temperature and moisture, lightning imaging observation and space environment detection are shown. Several innovative technologies including high accuracy rotation angle detection and scanning control, high precision calibration, micro vibration suppression, unified reference of platform and payload and on-orbit measurement, real-time image navigation and registration on-orbit were applied in FY-4. 展开更多
关键词 FY-4 GEO meteorological satellite three-axis stabilization quantitative remote sensing vertical highspectrum sounding real-time on-board image navigation and registration
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部