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基于轻量级金字塔密集残差网络的红外图像超分辨增强
引用本文:左岑,杨秀杰,张捷,王璇.基于轻量级金字塔密集残差网络的红外图像超分辨增强[J].红外技术,2021,43(3):251-257.
作者姓名:左岑  杨秀杰  张捷  王璇
作者单位:重庆电子工程职业学院 人工智能与大数据学院,重庆 401331;重庆望江工业集团有限公司,重庆 400071;中国人民解放军陆军重庆军代局,重庆 400050
基金项目:重庆市教委课题(KJ1729409);重庆市教委教改重点项目(162072);装备预研船舶重工联合基金。
摘    要:现有的红外制导武器严重依赖操作手对目标的捕获,其捕获的精度与目标的纹理细节正相关。为了提升弱小区域的显示质量,满足现有导引头小型化、模块化、低成本的设计要求,本文设计了一种基于轻量级金字塔密集残差网络的图像增强模型,该模型在密集残差网络基础上通过密集连接层和残差网络来学习不同尺度图像之间的非线性映射,充分利用多尺度特征进行高频残差预测。同时,采用深度监督模块指导网络训练,有利于实现较大上采样因子的超分辨增强,提高其泛化能力。大量仿真实验结果表明本文所提出的超分辨模型能够获得高倍率的超分辨增强效果,其重建质量也优于对比算法。

关 键 词:超分辨增强  轻量级  红外图像  深度学习  特征级联  损失函数  恒等映射
收稿时间:2019-05-19

Super-resolution Enhancement of Infrared ImagesUsing a Lightweight Dense Residual Network
ZUO Cen,YANG Xiujie,ZHANG Jie,WANG Xuan.Super-resolution Enhancement of Infrared ImagesUsing a Lightweight Dense Residual Network[J].Infrared Technology,2021,43(3):251-257.
Authors:ZUO Cen  YANG Xiujie  ZHANG Jie  WANG Xuan
Affiliation:1.College of Artificial Intelligence and Big Data, Chongqing Vocational College of Electronic Engineering, Chongqing 401331, China2.Chongqing Wangjiang Industrial Co. Ltd., Chongqing 400071, China3.Chongqing Military Agency of the PLA Army, Chongqing 400050, China
Abstract:Existing infrared-guided weapons heavily rely on operators to acquire targets,and the accuracy of acquisition is positively correlated with a target’s texture details.To improve the display quality of weak small regions and meet the design requirements of miniaturization,modularization,and low-cost seekers,an image super-resolution(SR)reconstruction algorithm based on a pyramid dense residual network is proposed.The dense residual network is the basic framework of the proposed model.Through the dense connection layer and the residual network,the model can learn the non-linear mapping between images of different scales,and the multi-scale feature can be used to predict the high-frequency residual.In addition,using the deep supervision module to guide network training is conducive to the realization of SR reconstruction with a larger upper-sampling factor and improvements to its generalization ability.A large number of simulation results show that our proposed model outperforms comparison algorithms and that it has a high engineering application value.
Keywords:SR reconstruction  lightweight  infrared image  dense residual-network  loss function  deep supervision
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