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基于PIC12F629的无磁流量传感器设计
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作者 徐止铎 田霞 《福建电脑》 2009年第6期144-145,共2页
利用PIC12F629单片机实现机械式热(冷)量表的水平旋翼式无磁流量计的微功耗流量传感器设计,通过单片机软件程序和外围硬件的配合,做到静态功耗小于10uA(3.6V锂电池供电),动态功耗小于30uA,配合热量表积分仪,可靠,精确,满足热量表对体积... 利用PIC12F629单片机实现机械式热(冷)量表的水平旋翼式无磁流量计的微功耗流量传感器设计,通过单片机软件程序和外围硬件的配合,做到静态功耗小于10uA(3.6V锂电池供电),动态功耗小于30uA,配合热量表积分仪,可靠,精确,满足热量表对体积流量计量全量程使用的要求。 展开更多
关键词 PIC12F629单片机 热(冷) 无磁流量传感器 微功耗 体积流量计量
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Volume Estimation of Small Scale Debris Flows Based on Observations of Topographic Changes Using Airborne LiDAR DEMs 被引量:1
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作者 Hosung KIM Seung Woo LEE +1 位作者 Chan-Young YUNE Gihong KIM 《Journal of Mountain Science》 SCIE CSCD 2014年第3期578-591,共14页
This paper describes a geographic information system(GIS)-based method for observing changes in topography caused by the initiation, transport, and deposition of debris flows using highresolution light detection and r... This paper describes a geographic information system(GIS)-based method for observing changes in topography caused by the initiation, transport, and deposition of debris flows using highresolution light detection and ranging(LiDAR) digital elevation models(DEMs) obtained before and after the debris flow events. The paper also describes a method for estimating the volume of debris flows using the differences between the LiDAR DEMs. The relative and absolute positioning accuracies of the LiDAR DEMs were evaluated using a real-time precise global navigation satellite system(GNSS) positioning method. In addition, longitudinal and cross-sectional profiles of the study area were constructed to determine the topographic changes caused by the debris flows. The volume of the debris flows was estimated based on the difference between the LiDAR DEMs. The accuracies of the relative and absolute positioning of the two LiDAR DEMs were determined to be ±10 cm and ±11 cm RMSE, respectively, which demonstrates the efficiency of the method for determining topographic changes at an scale equivalent to that of field investigations. Based on the topographic changes, the volume of the debris flows in the study area was estimated to be 3747 m3, which is comparable with the volume estimated based on the data from field investigations. 展开更多
关键词 Debris flow Topographic change LIDAR DEM Volume estimation Global navigation satellitesystem (GNSS)
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