首页> 外文会议>Conference on remote sensing of the ocean, sea ice, coastal waters, and large water regions >Ensuring that the Sentinel-3A altimeter provides climate-quality data
【24h】

Ensuring that the Sentinel-3A altimeter provides climate-quality data

机译:确保Sentinel-3A高度计提供气候质量数据

获取原文

摘要

Sentinel-3A, launched in February 2016, is part of ESA's long-term commitment to climate monitoring from space. Its suite of instruments for measuring surface topography includes a Microwave Radiometer (MWR) and SRAL, the first delay-Doppler instrument to provide global coverage. SRAL promises fine spatial resolution and reduced noise levels that should together lead to improved performance over all Earth surfaces. The Sentinel-3 Mission Performance Centre (S3MPC) has been developing the methodology to evaluate the accuracy of retrievals, monitor any changes and develop solutions to known problems. The S3MPC monitors internal temperatures, path delays and the shape of the generated pulses to assess the instruments health. The MWR records over known reference surfaces are compared with those from other spaceborne instruments. Over the ocean the SRAL's return pulses are analysed to give range to the sea surface, wave height and signal strength (which can be interpreted as wind speed). The metocean data are regularly contrasted with records from in situ measurements and the output from meteorological models, which rapidly highlights the effects of any changes in processing. Range information is used to give surface elevation, which is assessed in three ways. First, flights over a dedicated radar transponder provide an estimate of path delay to within ~10 mm (r.m.s.). Second, measurements are compared to GPS-levelled surfaces near Corsica and over Lake Issyk-kul. Third, there are consistency checks between ascending and descending passes and with other missions. Further waveform analysis techniques are being developed to improve the retrieval of information over sea-ice, land-ice and inland waters.
机译:Sentinel-3A于2016年2月发射,是ESA长期致力于从太空进行气候监测的一部分。其用于测量表面形貌的仪器套件包括微波辐射计(MWR)和SRAL,这是第一台提供全球覆盖的延迟多普勒仪器。 SRAL保证了良好的空间分辨率和降低的噪声水平,这将共同改善整个地球表面的性能。 Sentinel-3任务执行中心(S3MPC)一直在开发方法,以评估检索的准确性,监视任何变化并开发解决已知问题的解决方案。 S3MPC监视内部温度,路径延迟和生成的脉冲形状,以评估仪器的健康状况。将已知参考面上的MWR记录与其他星载仪器的MWR记录进行比较。在海洋上,对SRAL的返回脉冲进行了分析,以提供海面的范围,波高和信号强度(可以解释为风速)。定期将气象数据与现场测量的记录和气象模型的输出进行对比,从而迅速突出了加工过程中任何变化的影响。范围信息用于给出表面高程,可通过三种方式进行评估。首先,在专用雷达应答器上的飞行可提供约10 mm(r.m.s.)内的路径延迟估计。其次,将测量结果与科西嘉岛附近和伊塞克湖上的GPS水准仪表面进行比较。第三,在上升和下降通道之间以及与其他任务之间进行一致性检查。正在开发进一步的波形分析技术,以改善对海冰,陆冰和内陆水域的信息检索。

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