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Analytic variance estimates of Swank and Fano factors

机译:Swank和Fano因子的分析方差估计

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Purpose: Variance estimates for detector energy resolution metrics can be used as stopping criteria in Monte Carlo simulations for the purpose of ensuring a small uncertainty of those metrics and for the design of variance reduction techniques. Methods: The authors derive an estimate for the variance of two energy resolution metrics, the Swank factor and the Fano factor, in terms of statistical moments that can be accumulated without significant computational overhead. The authors examine the accuracy of these two estimators and demonstrate how the estimates of the coefficient of variation of the Swank and Fano factors behave with data from a Monte Carlo simulation of an indirect x-ray imaging detector. Results: The authors' analyses suggest that the accuracy of their variance estimators is appropriate for estimating the actual variances of the Swank and Fano factors for a variety of distributions of detector outputs. Conclusions: The variance estimators derived in this work provide a computationally convenient way to estimate the error or coefficient of variation of the Swank and Fano factors during Monte Carlo simulations of radiation imaging systems.
机译:目的:检测器能量分辨率指标的方差估计可以用作蒙特卡洛模拟的终止标准,以确保这些指标的较小不确定性并设计方差减少技术。方法:作者根据统计矩可以得出两个能量分辨率指标(Swank因子和Fano因子)的方差的估计值,而这些统计矩可以在没有大量计算开销的情况下进行累积。作者检查了这两个估计器的准确性,并证明了Swank和Fano因子变异系数的估计如何与间接X射线成像检测器的蒙特卡洛模拟的数据相符。结果:作者的分析表明,对于各种探测器输出的分布,其方差估计量的准确性适合于估计Swank和Fano因子的实际方差。结论:这项工作中得出的方差估计量提供了一种计算方便的方法,可以估算辐射成像系统的蒙特卡洛模拟过程中Swank和Fano因子的误差或变异系数。

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