量化(信号处理)
计算机科学
卷积(计算机科学)
核(代数)
卷积神经网络
算法
操作员(生物学)
人工神经网络
残差神经网络
人工智能
数学
离散数学
生物化学
转录因子
基因
抑制因子
化学
作者
Marcelo Gennari do Nascimento,Victor Adrian Prisacariu,Roger Fawcett
标识
DOI:10.1109/iccv.2019.00525
摘要
Quantization is a popular way of increasing the speed and lowering the memory usage of Convolution Neural Networks (CNNs). When labelled training data is available, network weights and activations have successfully been quantized down to 1-bit. The same cannot be said about the scenario when labelled training data is not available, e.g. when quantizing a pre-trained model, where current approaches show, at best, no loss of accuracy at 8-bit quantizations. We introduce DSConv, a flexible quantized convolution operator that replaces single-precision operations with their far less expensive integer counterparts, while maintaining the probability distributions over both the kernel weights and the outputs. We test our model as a plug-and-play replacement for standard convolution on most popular neural network architectures, ResNet, DenseNet, GoogLeNet, AlexNet and VGG-Net and demonstrate state-of-the-art results, with less than 1% loss of accuracy, without retraining, using only 4-bit quantization. We also show how a distillation-based adaptation stage with unlabelled data can improve results even further.
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