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首页> 外文期刊>Atmospheric Measurement Techniques >An extended radar relative calibration adjustment (eRCA) technique for higher-frequency radars and range-height indicator (RHI) scans
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An extended radar relative calibration adjustment (eRCA) technique for higher-frequency radars and range-height indicator (RHI) scans

机译:高频雷达和范围高度指示器(RHI)扫描的扩展雷达相对校准调整(ERCA)技术

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摘要

This study extends the relative calibration adjustment technique for calibration of weather radars to higherfrequency radars as well as range-height indicator (RHI) scans. The calibration of weather radars represents one of the most dominant sources of error for their use in a variety of fields including quantitative precipitation estimation and model comparisons. While most weather radars are routinely calibrated, the frequency of calibration is often less than required, resulting in miscalibrated time periods. While full absolute calibration techniques often require the radar to be taken offline for a period of time, there have been online calibration techniques discussed in the literature. The relative calibration adjustment (RCA) technique uses the statistics of the ground clutter surrounding the radar as a monitoring source for the stability of calibration but has only been demonstrated to work at S- and C-band for plan-position indicator (PPI) scans at a constant elevation.
机译:该研究扩展了用于校准天气雷达的相对校准调整技术,以更高频繁的雷达以及范围高度指示器(RHI)扫描。 天气雷达的校准代表了它们在包括定量降水估计和模型比较的各种领域中使用的最主导误差源之一。 虽然大多数天气雷达是常规校准的,但校准频率通常小于所需的频率,导致错误的时间段。 虽然完全绝对的校准技术通常需要雷达在一段时间内脱机,但在文献中讨论了在线校准技术。 相对校准调整(RCA)技术使用雷达围绕地面杂波的统计数据作为校准稳定性的监测源,但是仅在计划位置指示符(PPI)扫描的S-and C波段中仅进行了工作 在持续的海拔。

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