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Determination of the Signal Fluctuation Threshold of the Temperature-Ion Composition Ambiguity Problem Using Monte Carlo Simulations

机译:确定信号的波动阈值Temperature-Ion组成的歧义使用蒙特卡罗模拟问题

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摘要

Unambiguously estimating the plasma parameters of the ionosphere at altitudes between 130 and 300 km presents a problem for the incoherent scatter radar (ISR). At these ranges, ISR is unable to distinguish between different mixtures of molecular ions (NO~+ and O_2~+) and atomic oxygen ions (O~+). Common solutions to this problem are either to employ empirical or theoretical models of the ionosphere or to add a priori known plasma parameter information obtained from the plasma line of the ISR spectrum. Studies have demonstrated that plasma parameters can be unambiguously estimated in almost noiseless scenarios, not commonly feasible during routine monitoring. In this study, we define a theoretical framework to quantify the ambiguity problem and determine the maximum signal fluctuation levels of the ISR signal to unambiguously estimate plasma parameters. We conduct Monte Carlo simulations for different plasma parameters to evaluate the estimation performance of the most commonly used nonlinear least squares optimization algorithm. Results are shown as probability curves of valid convergence and correct estimation. We use simulations to quantify the estimation error when using ionospheric models as initial conditions of the optimization algorithm. We also determine the contribution to the estimation process of different combinations of parameters known from the plasma line, the particular contribution of each plasma parameter, and the effect of increasing the level of uncertainty of the parameters known a priori. Results suggest that knowing a priori both electron density and electron temperature parameters allows an unambiguous estimation even at high fluctuation levels.
机译:明确评估的等离子体参数电离层海拔在130和300之间公里提出了一种非相干散射的问题雷达(ISR)。区分不同的混合物分子离子(没有~ +和提取成分~ +)和原子氧离子(O ~ +)。采用经验或理论模型电离层或添加一个先天的等离子体从等离子体参数的信息线的ISR频谱。表明等离子体参数明确估计几乎无声的在日常场景,一般不可行监控。理论框架来量化模棱两可问题,确定最大信号ISR信号的波动水平明确估计等离子体参数。进行蒙特卡罗模拟对不同等离子体参数评估的评估最常用的非线性性能最小二乘优化算法。显示为概率曲线的有效融合和正确的估计。当使用量化的估计误差电离层模型的初始条件优化算法。贡献的估计过程从不同的组合参数等离子体线的特殊贡献每个等离子体参数的影响增加的不确定性参数已知的先验。知道一个先天的电子密度和允许一个电子温度参数明确的估计即使在高波动的水平。

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