蒙特卡罗方法
路径跟踪
光线追踪(物理)
分布式光线跟踪
光子
软件
光子输运的蒙特卡罗方法
追踪
算法
马尔科夫蒙特卡洛
计算机科学
混合蒙特卡罗
物理
光学
统计
数学
渲染(计算机图形)
计算机图形学(图像)
操作系统
程序设计语言
作者
Mikolaj Cieslak,Christiane Lemieux,Jim Hanan,Przemysław Prusinkiewicz
摘要
The distribution of light in the canopy is a major factor regulating the growth and development of a plant. The main variables of interest are the amount of photosynthetically active radiation (PAR) reaching different elements of the plant canopy, and the quality (spectral composition) of light reaching these elements. A light environment model based on Monte Carlo (MC) path tracing of photons, capable of computing both PAR and the spectral composition of light, was developed by Měch (1997), and can be conveniently interfaced with virtual plants expressed using the open L-system formalism. To improve the efficiency of the light distribution calculations provided by Měch’s MonteCarlo program, we have implemented a similar program QuasiMC, which supports a more efficient randomised quasi-Monte Carlo sampling method (RQMC). We have validated QuasiMC by comparing it with MonteCarlo and with the radiosity-based CARIBU software (Chelle et al. 2004), and we show that these two programs produce consistent results. We also assessed the performance of the RQMC path tracing algorithm by comparing it with Monte Carlo path tracing and confirmed that RQMC offers a speed and/or accuracy improvement over MC.
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