利用自适应 DFT 算法减轻 X 波段天气雷达测偏矩中雷达罩引起的偏差

IF 3.2 3区 地球科学 Q2 METEOROLOGY & ATMOSPHERIC SCIENCES Atmospheric Measurement Techniques Pub Date : 2024-08-22 DOI:10.5194/amt-2024-117
Thiruvengadam Padmanabhan, Guillaume Lesage, Ambinintsoa Volatiana Ramanamahefa, Joël Van Baelen
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引用次数: 0

摘要

摘要近年来,结构紧凑、成本效益高的可部署 X 波段偏振雷达的应用越来越普及,尤其是在地形复杂的地区。可部署雷达一般使用金属线将多块面板连接起来的雷达罩,以方便运输。作为 ESPOIRS 项目的一部分,大气与气旋实验室获得了一个四面板雷达罩结构的 X 波段气象雷达。在这项研究中,我们研究了雷达罩对测量到的偏振变量的影响,特别是差分反射率和差分相位。我们的观测结果表明,连接雷达罩面板的金属线在垂直极化时会带来功率损耗,从而导致差分反射率值出现正偏差。为了解决在差分反射率和差分相位中观察到的空间变化偏差,我们开发了一种基于离散傅里叶变换的新型算法。该算法的性能在留尼汪岛 Batsirai 气旋造成的强降雨事件中进行了测试。对比和联合直方图分析表明,该算法能有效纠正偏振变量的空间偏差。
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Mitigating Radome Induced Bias in X-Band Weather Radar Polarimetric moments using Adaptive DFT Algorithm
Abstract. In recent years, the application of compact and cost-effective deployable X-band polarimetric radars has gained in popularity, particularly in regions with complex terrain. The deployable radars generally use a radome constructed by joining multiple panels using metallic threads to facilitate easy transportation. As a part of the ESPOIRS project, Laboratoire de l’Atmosphère et des Cyclones has acquired an X-band meteorological radar with four panel radome configuration. In this study, we investigated the effect of the radome on the measured polarimetric variables, particularly differential reflectivity and differential phase. Our observations reveal that the metallic threads connecting the radome panels introduce power loss at vertical polarization, leading to a positive bias in the differential reflectivity values. To address the spatial variability bias observed in differential reflectivity and differential phase, we have developed a novel algorithm based on the Discrete Fourier Transform. The algorithm's performance was tested during an intense heavy rainfall event caused by the Batsirai cyclone on Reunion Island. The comparative and joint histogram analysis demonstrates the algorithm's effectiveness in correcting the spatial bias in the polarimetric variables.
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来源期刊
Atmospheric Measurement Techniques
Atmospheric Measurement Techniques METEOROLOGY & ATMOSPHERIC SCIENCES-
CiteScore
7.10
自引率
18.40%
发文量
331
审稿时长
3 months
期刊介绍: Atmospheric Measurement Techniques (AMT) is an international scientific journal dedicated to the publication and discussion of advances in remote sensing, in-situ and laboratory measurement techniques for the constituents and properties of the Earth’s atmosphere. The main subject areas comprise the development, intercomparison and validation of measurement instruments and techniques of data processing and information retrieval for gases, aerosols, and clouds. The manuscript types considered for peer-reviewed publication are research articles, review articles, and commentaries.
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