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首页> 外文期刊>International journal of antennas and propagation >Dual-Polarized Planar Phased Array Analysis for Meteorological Applications
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Dual-Polarized Planar Phased Array Analysis for Meteorological Applications

机译:气象应用的双极化平面相控阵分析

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摘要

This paper presents a theoretical analysis for the accuracy requirements of the planar polarimetric phased array radar (PPPAR) in meteorological applications. Among many factors that contribute to the polarimetric biases, four factors are considered and analyzed in this study, namely, the polarization distortion due to the intrinsic limitation of a dual-polarized antenna element, the antenna pattern measurement error, the entire array patterns, and the imperfect horizontal and vertical channels. Two operation modes, the alternately transmitting and simultaneously receiving (ATSR) mode and the simultaneously transmitting and simultaneously receiving (STSR) mode, are discussed. For each mode, the polarimetric biases are formulated. As the STSR mode with orthogonal waveforms is similar to the ATSR mode, the analysis is mainly focused on the ATSR mode and the impacts of the bias sources on the measurement of polarimetric variables are investigated through Monte Carlo simulations. Some insights of the accuracy requirements are obtained and summarized.
机译:本文针对气象应用中平面极化相控阵雷达(PPPAR)的精度要求提出了理论分析。在许多导致极化偏差的因素中,本研究考虑并分析了四个因素,即,由于双极化天线元件的固有局限性导致的极化失真,天线方向图测量误差,整个阵列方向图和不完美的水平和垂直通道。讨论了两种操作模式,即交替发送和同时接收(ATSR)模式和同时发送和同时接收(STSR)模式。对于每种模式,都会制定极化偏置。由于具有正交波形的STSR模式与ATSR模式相似,因此分析主要集中在ATSR模式上,并且通过蒙特卡洛模拟研究了偏置源对极化变量测量的影响。获得并总结了一些对精度要求的见解。

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