隐式蒙特卡罗计算中源光子发射时间的解析处理以降低噪声

T. Trahan, N. Gentile
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引用次数: 4

摘要

统计不确定性是任何辐射输运问题的蒙特卡罗模拟所固有的。在与空间角频率无关的辐射传输计算中,解的不确定性完全是由于源光子发射时间的随机抽样。我们对隐式蒙特卡罗算法进行了改进,消除了由于对源光子发射时间采样而产生的噪声。在独立于空间、角度和能量的问题中,新算法生成平滑解,而标准隐式蒙特卡罗解是有噪声的。对于空间和角度相关的问题,新算法在某些情况下相对于标准隐式蒙特卡罗显示出更低的噪声,并且在所有其他情况下具有可比较的噪声。这些改进仅限于短时间尺度;在较长的时间尺度上,由于空间变量和角度变量的随机采样而产生的噪声往往会主导新算法的降噪。
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Analytic Treatment of Source Photon Emission Times to Reduce Noise in Implicit Monte Carlo Calculations
Statistical uncertainty is inherent to any Monte Carlo simulation of radiation transport problems. In space-angle-frequency independent radiative transfer calculations, the uncertainty in the solution is entirely due to random sampling of source photon emission times. We have developed a modification to the Implicit Monte Carlo algorithm that eliminates noise due to sampling of the emission time of source photons. In problems that are independent of space, angle, and energy, the new algorithm generates a smooth solution, while a standard implicit Monte Carlo solution is noisy. For space- and angle-dependent problems, the new algorithm exhibits reduced noise relative to standard implicit Monte Carlo in some cases, and comparable noise in all other cases. The improvements are limited to short time scales; over long time scales, noise due to random sampling of spatial and angular variables tends to dominate the noise reduction from the new algorithm.
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Transport Theory and Statistical Physics
Transport Theory and Statistical Physics 物理-物理:数学物理
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