...
首页> 外文期刊>Journal of hydrometeorology >A Real-Time Automated Quality Control of Hourly Rain Gauge Data Based on Multiple Sensors in MRMS System
【24h】

A Real-Time Automated Quality Control of Hourly Rain Gauge Data Based on Multiple Sensors in MRMS System

机译:MRMS系统中基于多个传感器的每小时雨量计数据的实时自动化质量控制

获取原文
获取原文并翻译 | 示例
           

摘要

Automated rain gauge networks provide direct measurements of precipitation and have been used for numerous applications, such as generating regional and national precipitation maps, calibrating remote sensing quantitative precipitation estimation (QPE), and validating hydrological and meteorological model predictions. However, automated gauge observations are prone to be affected by a variety of error sources and require a careful quality-control (QC) procedure. Many previous gauge QC techniques were based on spatiotemporal checks within the gauge network itself, and their effectiveness can be dependent on gauge densities and precipitation regimes. The current study takes advantage of the multisensor data sources in the Multi-Radar Multi-Sensor (MRMS) system and develops an automated and computationally efficient gauge QC scheme based on the consistency of hourly gauge and radar QPE observations. Radar and gauge error characteristics related to radar sampling geometry, precipitation regimes, and freezing-level height is utilized within this scheme. This QC scheme is evaluated by testing its capability to identify suspect gauges and comparing the ability to quality-controlled gauges through statistical and spatial comparisons of gauge-influenced gridded QPE products. Spatial analysis of the gridded QPE products in MRMS resulted in a more physical spatial QPE distribution using quality-controlled gauges versus the same product created with non-quality-controlled gauge data.
机译:自动化的雨量计网络可直接测量降水,已用于许多应用,例如生成区域和国家降水图,校准遥感定量降水估计(QPE)以及验证水文和气象模型预测。但是,自动仪表的观测值容易受到各种误差源的影响,因此需要仔细的质量控制(QC)程序。许多以前的量表QC技术都是基于量表网络本身内的时空检查,其有效性可能取决于量表密度和降水状况。当前的研究利用了多雷达多传感器(MRMS)系统中的多传感器数据源,并基于每小时仪表和雷达QPE观测的一致性,开发了一种自动且计算效率高的仪表QC方案。在此方案中,利用了与雷达采样几何形状,降水状况和冻结高度有关的雷达和仪表误差特性。通过测试测试仪识别可疑测量仪的能力,并通过对测量仪影响的网格化QPE产品进行统计和空间比较,将其与质量控制测量仪的能力进行比较,从而评估此质量控制方案。在MRMS中对栅格化QPE产品进行空间分析后,与使用非质量控制量规数据创建的同一产品相比,使用质量控制量规可得到更物理的空间QPE分布。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号