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The Impact of Elevation Sidelobe Contamination on Radar Data Quality for Operational Interpretation

机译:海拔侧链污染对运作解释的雷达数据质量的影响

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To fulfill the evolving observational needs of the National Weather Service (NWS), future weather radar systems will have to meet demanding requirements. Designing such systems will likely involve trade-offs between system cost and operational performance. A potential cost driver for future weather radars that could cause significant data-quality impacts on forecasters is the required angular resolution and sidelobe performance, which are mainly dictated by the antenna radiation pattern. Typical antenna radiation patterns can be characterized by the width of the main lobe and their sidelobe levels, which are traditionally measured across the azimuthal and elevation dimensions. In this work, we study the impact of increasing sidelobe levels on NWS forecasters' data interpretation during warning operations. The resulting impact model can be used by decision-makers to better understand the cost-benefit trade-offs inherent in any radar system design.
机译:为了满足国家天气服务(NWS)的不断变化的观测需求,未来的天气雷达系统将不得不满足苛刻的要求。 设计此类系统可能涉及系统成本和操作性能之间的权衡。 对于未来的天气雷达可能导致对预测仪产生显着的数据质量影响的潜在成本驱动因素是所需的角度分辨率和侧链性能,主要由天线辐射模式决定。 典型的天线辐射图案可以通过主叶片的宽度和它们的侧链水平的特征在于,它们在传统上测量在方位角和高度尺寸上。 在这项工作中,我们研究了在警告操作期间增加了侧链水平对NWS预测员数据解释的影响。 决策者可以使用所产生的影响模型,以更好地了解任何雷达系统设计中固有的成本效益折衷。

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