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Adaptive rendering based on a weighted mixed-order estimator

机译:基于加权混合阶估计的自适应渲染

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In this paper, we propose a novel adaptive rendering method to robustly handle noise artifacts and outliers of Monte Carlo ray tracing by combining the Nadaraya-Watson and robust local linear estimators while efficiently preserving fine details. Our method first constructs a sparse robust local linear estimator in feature space (normal,texture,etc.), while also removing spike noise. Then, we utilize the Nadaraya-Watson estimator to filter the outlier-free image. We generate the final image by interpolating the values of each estimator at each pixel with weights that are inversely proportional to the estimated mean squared errors. Lastly, we distribute additional samples to the regions with higher estimated mean squared errors if sampling budget remains. We have demonstrated that our estimator outperforms previous methods visually and numerically.
机译:在本文中,我们提出了一种新颖的自适应渲染方法,该方法通过将Nadaraya-Watson与鲁棒的局部线性估计量相结合,同时有效地保留精细细节,来鲁棒地处理噪声噪声和蒙特卡洛射线追踪的异常值。我们的方法首先在特征空间(法线,纹理等)中构造一个稀疏的鲁棒局部线性估计量,同时还消除了尖峰噪声。然后,我们利用Nadaraya-Watson估计器过滤无异常值的图像。我们通过将每个估算器的值插值到每个像素的权重与估计的均方误差成反比来生成最终图像。最后,如果仍保留抽样预算,我们将其他样本分配到估计均方误差较高的区域。我们已经证明了我们的估计器在视觉和数字上都优于以前的方法。

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