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Bayesian Filtering in Incoherent Scatter Plasma Parameter Fits

机译:贝叶斯滤波的非相干散射等离子体参数符合

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摘要

Incoherent scatter (IS) radars are invaluable instruments for ionospheric physics, since they observe altitude profiles of electron density (Ne), electron temperature (Te), ion temperature (Ti) and line-of-sight plasma velocity (Vi) from ground. However, the temperatures can be fitted to the observed IS spectra only when the ion composition is known, and resolutions of the fitted plasma parameters are often insufficient for auroral electron precipitation, which requires high resolutions in both range and time. The problem of unknown ion composition has been addressed by means of the full-profile analysis, which assumes that the plasma parameter profiles are smooth in altitude, or follow some predefined shape. In a similar manner, one could assume smooth time variations, but this option has not been used in IS analysis. We propose a plasma parameter fit technique based on Bayesian filtering, which we have implemented as an additional Bayesian Filtering Module (BAFIM) in the Grand Unified Incoherent Scatter Design and Analysis Package (GUISDAP). BAFIM allows us to control gradients in both time and range directions for each plasma parameter separately. With BAFIM we can fit F1 region ion composition together with N_e, T_e, T_i and V_i, and we have reached 4 s/900 m time/range steps in four-parameter fits of N_e, T_e, T_i and V_i in E region observations of auroral electron precipitation.
机译:非相干散射(是)雷达是无价的电离层物理仪器,因为他们观察高度的电子密度(Ne),电子温度(Te),离子温度(Ti)和视距等离子体速度(Vi)地面。观察到的是只有当离子光谱组合是已知的,决议的安装等离子体参数往往是不够的极光电子沉淀的需要高分辨率的范围和时间。未知的离子成分的问题通过完整概要分析,解决它假定等离子体参数配置文件在高度光滑,或遵循一些预定义的吗形状。光滑的时间变化,但没有这个选项被用于分析。基于贝叶斯参数符合技术过滤,我们作为一个实现额外的贝叶斯滤波模块(BAFIM)大统一的设计和非相干散射分析软件包(GUISDAP)。控制渐变时间和范围方向分别为每个等离子体参数。与BAFIM我们可以配合F1地区离子组成一起N_e、T_e T_i V_i,和达到4 s / 900次/范围步骤四个参数的N_e、T_e T_i、V_i E地区的观测极光电子降水。

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