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复值卷积网络的数学动机

A Mathematical Motivation for Complex-Valued Convolutional Networks.

作者信息

Tygert Mark, Bruna Joan, Chintala Soumith, LeCun Yann, Piantino Serkan, Szlam Arthur

出版信息

Neural Comput. 2016 May;28(5):815-25. doi: 10.1162/NECO_a_00824. Epub 2016 Feb 18.

Abstract

A complex-valued convolutional network (convnet) implements the repeated application of the following composition of three operations, recursively applying the composition to an input vector of nonnegative real numbers: (1) convolution with complex-valued vectors, followed by (2) taking the absolute value of every entry of the resulting vectors, followed by (3) local averaging. For processing real-valued random vectors, complex-valued convnets can be viewed as data-driven multiscale windowed power spectra, data-driven multiscale windowed absolute spectra, data-driven multiwavelet absolute values, or (in their most general configuration) data-driven nonlinear multiwavelet packets. Indeed, complex-valued convnets can calculate multiscale windowed spectra when the convnet filters are windowed complex-valued exponentials. Standard real-valued convnets, using rectified linear units (ReLUs), sigmoidal (e.g., logistic or tanh) nonlinearities, or max pooling, for example, do not obviously exhibit the same exact correspondence with data-driven wavelets (whereas for complex-valued convnets, the correspondence is much more than just a vague analogy). Courtesy of the exact correspondence, the remarkably rich and rigorous body of mathematical analysis for wavelets applies directly to (complex-valued) convnets.

摘要

复值卷积网络(convnet)通过对以下三种操作的组合进行重复应用,将该组合递归地应用于非负实数输入向量:(1)与复值向量进行卷积,接着(2)对所得向量的每个元素取绝对值,然后(3)进行局部平均。对于处理实值随机向量而言,复值convnet可被视为数据驱动的多尺度加窗功率谱、数据驱动的多尺度加窗绝对值谱、数据驱动的多小波绝对值,或者(在其最一般的配置下)数据驱动的非线性多小波包。实际上,当convnet滤波器为加窗复值指数函数时,复值convnet能够计算多尺度加窗谱。例如,使用修正线性单元(ReLU)、Sigmoid函数(如逻辑函数或双曲正切函数)非线性激活函数或最大池化的标准实值convnet,显然与数据驱动的小波不存在相同的确切对应关系(而复值convnet的对应关系远不止是模糊的类比)。得益于这种确切的对应关系,小波丰富且严谨的数学分析体系可直接应用于(复值)convnet。

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