nonuniformity correction nuc 非均匀性校正
Adaptive Nonuniformity Correction 自适应非均匀性校正
infrared nonuniformity correction 红外图像非均匀性校正
scene based nonuniformity correction 场景的非均匀校正算法
The causations and features of nonuniformlty in infrared imaging systems are described in the first part of this paper. Several methods of nonuniformity correction (NUC) for FPA are analyzed and compared in detail.
本文首先分析了红外成像系统非均匀性产生的原因及表现特征,对目前存在的几种非均匀性校正方法进行了详细的探讨和对比。
参考来源 - 红外成像系统非均匀性校正方法研究Based on the above theory analysis and method research, a new infrared imaging system is designed. The relevant image preprocessing of nonuniformity correction and image contrast enhancement are achieved.
在上述理论分析与方法研究的基础上,本文设计了一套新的医用红外成像系统,针对红外图像的特点进行了相应的图像预处理研究,主要实现了非均匀校正和图像对比度增强。
参考来源 - 基于生物传热效应的医用红外热成像技术This paper gives the hardware and software design of an infrared image nonuniformity correction system based on DSP.
本文给出了一种基于DSP的红外图像非均匀性校正系统的软硬件设计。
参考来源 - 基于DSP的红外图像非均匀性校正The paper firstly analyzes the cause of the infrared images of nonuniformity, by discussion and comparison of several commonly used methods of nonuniformity correction, selected two-point algorithm, which is suitable for real-time implementation.
论文首先分析了红外图像非均匀性产生的原因,论述了几种常用的红外图像非均匀校正方法并作了对比,选择了一种适于实时实现的校正算法-两点温度定标算法。
参考来源 - 基于DSP的红外图像处理及传输系统研究·2,447,543篇论文数据,部分数据来源于NoteExpress
In this paper, the disadvantages of the traditional nonuniformity correction methods for infrared focal plane arrays are analyzed firstly.
首先分析了传统的非均匀性校正方法的缺点,指出自适应校正红外焦平面器件非均匀性的必要性。
Compensating for temporal drift of fixed-pattern noise is an important problem in the techniques for nonuniformity correction of infrared focal plane arrays.
补偿固定噪声的时间漂移是红外焦平面非均匀校正技术中面临的一个重要问题。
In order to solve the problem of motion estimation for nonuniformity correction of infrared focal plane arrays, a new fast algorithm for image registration is presented.
为了解决红外焦平面非均匀算法中出现的运动估值问题,提出了一种新的快速图像配准算法。
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