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首页> 外文期刊>Journal of atmospheric and solar-terrestrial physics >A multi-beam incoherent scatter radar technique for the estimation of ionospheric electron density and T_e/T_i profiles at Jicamarca
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A multi-beam incoherent scatter radar technique for the estimation of ionospheric electron density and T_e/T_i profiles at Jicamarca

机译:多束非相干散射雷达技术,用于估算Jicamarca的电离层电子密度和T_e / T_i剖面

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摘要

A multi-beam incoherent scatter radar technique has been developed at the Jicamarca Radio Observatory in order to maximize the number of ionospheric parameters that can be estimated simultaneously. The technique interleaves radar observations with antenna beams pointing perpendicular and oblique to the Earth's magnetic field. For the estimation of the ionospheric parameters, we have modeled the magnetic aspect angle variations of the signal power and cross-correlation data measured in multiple directions. The data model, formulated in terms of soft-target radar equations, was built based on the theories of incoherent scattering and magneto-ionic propagation. Applying a nonlinear least-squares inversion algorithm, we have succeeded in measuring simultaneously ionospheric electron densities Ne, electron-to-ion temperature ratios Te?Ti as well as vertical and zonal plasma drifts. In the past, radar users had to choose between either perpendicular-to-B or oblique modes, thus, the application of this technique extends the current capabilities of the Jicamarca radar.
机译:Jicamarca无线电天文台开发了一种多波束非相干散射雷达技术,目的是使可以同时估算的电离层参数数量最大化。该技术利用垂直于和倾斜于地球磁场的天线波束来交织雷达观测。为了估算电离层参数,我们对信号功率的磁纵横比变化和在多个方向上测量的互相关数据进行了建模。基于非相干散射和磁离子传播理论,建立了以软目标雷达方程式表示的数据模型。应用非线性最小二乘反演算法,我们成功地同时测量了电离层电子密度Ne,电子与离子的温度比Te?Ti以及垂直和纬向等离子体漂移。过去,雷达用户不得不在垂直于B模式或倾斜模式之间进行选择,因此,该技术的应用扩展了Jicamarca雷达的当前功能。

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