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Empirical Phase Calibration for Multistatic Specular Meteor Radars Using a Beamforming Approach

机译:使用波束成形方法对多静态镜面流星雷达进行经验相位校准

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Specular meteor radars have proven useful for observing mesosphere and lower thermosphere altitudes. More recently, their capabilities have been enhanced by including multistatic configurations. In both cases, monostatic and multistatic, the multiantenna interferometer used to determine the location of the measurements needs to be carefully calibrated in phase. In this work we proposed a technique to calibrate the receiving phases of such interferometers, including the standard five-antenna Jones configuration located on a plane and arbitrary configurations not necessarily located on a plane and not limited to five antennas. Our technique uses beamforming and nonlinear least squares fitting to determine the angle of arrivals that are consistent with the complex spatial coherences of the detected meteors. The optimization process uses a priori information based on the expected angular and altitude distribution of the echoes. The technique is demonstrated using real bistatic data. The obtained distribution of inverse decay time as a function of altitude is shown to be a sensitive and independent quality control feature of the applied calibration.
机译:镜面流星雷达已被证明可用于观测中层和较低的热层高度。最近,通过包括多静态配置来增强了它们的功能。在单静态和多静态两种情况下,用于确定测量位置的多天线干涉仪都需要仔细地进行相位校准。在这项工作中,我们提出了一种用于校准此类干涉仪的接收相位的技术,包括位于平面上的标准五天线琼斯配置和不一定位于平面上且不限于五个天线的任意配置。我们的技术使用波束成形和非线性最小二乘拟合来确定与检测到的流星的复杂空间相干性一致的到达角。优化过程基于回波的预期角度和高度分布使用先验信息。使用实际的双站数据演示了该技术。所获得的反衰减时间与海拔高度的关系分布是所应用校准的敏感且独立的质量控制特征。

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