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Research of Point Flux Estimation Method

机译:点通量估计方法的研究

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In the calculation of point flux by Monte Carlo simulation, there is a special disadvantage in the mostly used method of next event estimation (NEE) for which theoretical variance is infinite. And, this problem has not yet been solved satisfactorily. The purpose of this paper is to provide some new ideas to solve the problem of infinite variance without introducing any bias for the mean. To eliminate the unbounded factors, the relations among the different state variables for two neighboring collisions are analyzed; then, on the basis of the integral expression of the once-more scattered flux contribution to the point detector, by changing the state variables to be sampled, six basic methods are derived-two of them are NEE and collision probability estimation, and four are new methods. Furthermore, based on one of the new methods, by variable substitution, a new method called exponent biased sample estimation (EBS) is obtained that can eliminate the |r_d~→ - r_m~→|~(-2) singularity factor and has no exponent factor, which exists in other methods. The benchmark results show that EBS is much better than NEE with the variance of one order of magnitude smaller and a figure-of-merit factor of several hundreds higher sometimes, and its calculation efficiency is higher than that of the once more collision flux estimation method. Compared with the direction biased sample estimation method, EBS has no advantage in variance, but the sample procedures are much simpler and use less CPU time.
机译:在通过蒙特卡洛模拟计算点通量时,在最常用的下一事件估计(NEE)方法中存在一个特殊的缺点,即理论方差是无限的。并且,该问题尚未令人满意地解决。本文的目的是提供一些新的思路来解决无限方差问题,而不会对均值引入任何偏差。为了消除无限因素,分析了两个相邻碰撞的不同状态变量之间的关系。然后,基于对点检测器的一次散射通量贡献的积分表达式,通过更改要采样的状态变量,导出了六种基本方法,其中两种是NEE和碰撞概率估计,而四种是新方法。此外,基于一种新方法,通过变量替换,获得了一种新的称为指数有偏样本估计(EBS)的方法,该方法可以消除| r_d〜→-r_m〜→|〜(-2)奇异因子并且没有其他方法中存在的指数因子。基准测试结果表明,EBS比NEE好得多,方差小一个数量级,而品质因数有时高数百倍,并且其计算效率高于再一次的碰撞通量估计方法。 。与方向偏向的样本估计方法相比,EBS在方差方面没有优势,但是样本过程更简单并且使用更少的CPU时间。

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