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To split or not to split: Case studies on Monte Carlo analysis of illumination ray tracing concerning the usefulness of ray-splitting

机译:分裂或不分裂:关于射线分裂有用性的照明射线跟踪蒙特卡罗分析的案例研究

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In Monte Carlo ray tracing, the efficacy of variance reduction techniques is often the subject of debate. One portion of the debate regards the use of ray-splitting in illumination analysis. While analysis results should be the same whether ray-splitting or no ray-splitting is used, one approach might result in better precision for a given calculation time. Additionally, inexperienced illumination designers may perform analyses in such a way as to exacerbate the difference in precision between the two methods. This results in a very important decision for illumination designers: using ray-splitting or not can affect results and the time spent getting them. For this paper, common illumination applications are analyzed by ray tracing in TracePro (a non-sequential Monte Carlo ray tracing program) and the analysis results are compared. Both ray-splitting and no ray-splitting methods are used to see if the analyses converge to the same results for simple setup conditions. The results will illustrate the factors to consider of before choosing to use ray-splitting or not, and show examples when one method may be better than another.
机译:在Monte Carlo Ray跟踪中,差异减少技术的功效通常是辩论的主题。辩论的一部分关于使用光线分析在照明分析中的使用。虽然分析结果应该是相同的射线分裂或没有光线分裂,但是一种方法可能导致给定的计算时间更好地精确度。另外,缺乏经验的照明设计人员可以以这种方式进行分析,以加剧两种方法之间的精确度的差异。这导致对照明设计人员的一个非常重要的决定:使用光线分裂或不影响结果,并且花费时间的时间。为此,通过TRACEPRO(非序贯蒙特卡罗射线跟踪程序)中的射线跟踪分析常见的照明应用程序,并比较分析结果。光线分裂和无需扫描方法都用于查看分析是否会聚到简单设置条件的相同结果。结果将说明在选择使用光线分裂之前考虑的因素,并且当一个方法可能比另一个方法更好时显示示例。

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