论文标题

通过小波优化的美白增强图像

Image enhancement with wavelet-optimized whitening

论文作者

Auchère, Frédéric, Soubrié, Elie, Pelouze, Gabriel, Buchlin, Éric

论文摘要

由于其物理性质,太阳能电晕表现出很大的强度空间变化,因此很难同时可视化所有级别和尺度上存在的特征。已经提出了许多通用和专门的过滤器来增强冠状图像。但是,其中大多数要求对参数进行临时调整,以产生主观的良好结果。我们的目的是开发一种通用图像增强技术,该技术将产生同样好的结果,但基于客观标准。该方法的基本原理是在所有尺度和位置,输入图像的{\ Itàtrous}小波频谱中的功率均等或美白。 {\ itàtrous}转换的避免边缘的修改,该变换使用小波平面中局部差异的双边权重来抑制数据中不连续性产生的不良光晕。为太阳能电晕的各种极端紫外线(EUV)和白光图像提供了结果。提出的过滤器会产生尖锐而对比的输出,而无需手动调整参数。此外,内置的剥离方案可防止其他增强方法典型的高频噪声的爆炸,而不会平滑统计学上重要的小规模特征。该算法的标准版本大约是广泛使用的多尺度高斯标准化(MGN)的两倍。双边版本较慢,但在存在尖峰或边缘的情况下提供了明显更好的结果。与其他方法的比较表明,在调整免费参数时,美白原理可能对应于大多数用户的主观标准。

Due to its physical nature, the solar corona exhibits large spatial variations of intensity that make it difficult to simultaneously visualize the features present at all levels and scales. Many general-purpose and specialized filters have been proposed to enhance coronal images. However, most of them require the ad hoc tweaking of parameters to produce subjectively good results. Our aim was to develop a general purpose image enhancement technique that would produce equally good results, but based on an objective criterion. The underlying principle of the method is the equalization, or whitening, of power in the {\it à trous} wavelet spectrum of the input image at all scales and locations. An edge-avoiding modification of the {\it à trous} transform that uses bilateral weighting by the local variance in the wavelet planes is used to suppress the undesirable halos otherwise produced by discontinuities in the data. Results are presented for a variety of extreme ultraviolet (EUV) and white light images of the solar corona. The proposed filter produces sharp and contrasted output, without requiring the manual adjustment of parameters. Furthermore, the built-in denoising scheme prevents the explosion of high-frequency noise typical of other enhancement methods, without smoothing statistically significant small-scale features. The standard version of the algorithm is about two times faster than the widely used multiscale Gaussian normalization (MGN). The bilateral version is slower, but provides significantly better results in the presence of spikes or edges. Comparisons with other methods suggest that the whitening principle may correspond to the subjective criterion of most users when adjusting free parameters.

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