Application of recursive mixed least squares to nonuniformity correction in infrared focal plane arrays 递推混合最小二乘在红外焦平面阵列非均匀校正中的应用
Due to the presence of pixel deviation in32-channel MMW focal plane imaging, a novel pixel calibration method based on data dependence is proposed. 针对32通道毫米波焦平面成像中存在的像素偏移,提出了基于数据相关性进行像素校准的方法。
To a large extent, the operating temperature characteristics of an uncooled focal plane array can decide the imaging quality of the imaging system. 作为当前红外成像领域的研究热点,非致冷焦平面的工作温度特性在很大程度上决定了非致冷探测器的成像质量。
The design of high-precision temperature control system is the key to achieve high performance uncooled infrared focal plane thermal imager. 高精度的温控系统是实现高性能非制冷红外焦平面热像仪设计的关键。
Applying this method to the lens design, the lens'wavelength and weight corresponds to spectral response features of the output signal in the detector's focal plane. 将该方法应用于实际物镜设计,发现光学系统波长及权重符合探测器焦平面输出信号光谱响应特性。
Uncooled focal plane array ( UFPA) is the core of a microbolometer. 是目前前景看好、发展最快的非制冷焦平面阵列(UFPA)。
For uncooled focal plane array pixel maintain a steady temperature can improve the precision, temperature control system based on ADN8830 single-chip thermoelectric cooler controller is designed. 本文针对非制冷焦平面阵列像元温度保持恒定可以提高测试精度的问题,提出了基于ADN8830单芯片热电制冷器控制器的温控系统设计。
A crosstalk experimental setup of infrared focal plane array ( IRFPA) is introduced briefly. 介绍了红外焦平面阵列串音测量装置。
In the imaging process of staring Infrared Focal Plane Array ( IFPA), the spatial-sampling frequency is determined by the physical size and spatial distance of detecting units. 在凝视型红外焦平面热成像系统的成像过程中,空间采样频率决定于探测单元的物理尺寸和间距。
A technique plan of infrared imaging with the focal plane array of ferroelectric ceramics is advanced. 提出了铁电陶瓷焦平面阵列红外成像的技术方案,重点讨论了信号处理技术。
32-channel MMW Focal Plane Imaging Calibration Based on Data Dependence 基于数据相关性的32通道毫米波焦平面成像校准研究
Thermal design of CCD focal plane assemblies for attitude-varied space cameras 多姿态变化相机中CCD焦面组件的热设计
The Structure and Property of BST Thick Film Uncooled Infrared Focal Plane Array BST厚膜非制冷红外焦平面阵列结构及特性研究
There are two basic types of shutters used in photographic cameras-between-the-lens and focal plane. 摄影照相机内使用的快门有两种基本类型:透镜间快门和集平面快门。
It has an aluminized surface that reflects starlight to form an image at the focal plane. 表面镀铝膜,将星光反射到焦平面上成像。
Temperature unstability is one of the important factors affecting the performance of an uncooled infrared focal plane detector. 温度不稳定是影响非致冷红外焦平面探测器性能的重要因素之一。
It is a complex magnifying lens used to view the image formed at the focal plane. 它是比较复杂的放大影像的透镜,观察焦平面的图象。
Performance analysis of the substrate-free focal plane array in infrared imaging 无基底焦平面阵列的红外成像性能分析
A Design of High Precision Temperature Controlling System for Uncooled Infrared Focal Plane 一种高精度非致冷红外焦平面温度控制系统的设计
In order to reduce power consumption of uncooled infrared focal plane arrays, the readout circuit of temperature stabilizer eliminated thermoelectric coolers ( TEC) was studied. 为了降低非制冷红外焦平面阵列的功耗,研究了去除热电制冷器(TEC)等温度稳定装置的读出电路。
How to define noise and associated performance parameters for infrared detector and infrared focal plane array detectors; 象限式红外探测器是红外制导、红外跟踪系统中的核心部件,其性能指标直接关系到系统的工作特性。
Novel scene adaptive method for non-uniformity correction in infrared focal plane arrays 场景自适应的红外焦平面阵列非均匀性校正新方法
Stripe nonuniformity is very typical in line infrared focal plane ( IRFPA) and uncooled starring IRFPA. 条纹非均匀性在线阵红外探测器和面阵非制冷型红外探测器中非常普遍。
In order to ensure the temperature stabilization of each sensitive element on the focal plane, a high performance and accuracy temperature control system is designed. 为了保证焦平面上各敏感元的温度稳定性,设计了一个高性能、高精度的温度控制系统。
Study of Backside Passivation in InSb Focal Plane Detector Device Processing: Etching. Surface passivation; dielectric films. InSb焦平面探测器背面钝化的研究元件制程:蚀刻,表面钝化,介电材料薄膜。
Real-time nonuniformity correction of infrared focal plane arrays by system on programmable chip 利用单片可编程系统对红外焦平面阵列进行实时非均匀性校正
Application of Cold Reflection Image of Focal Plane in Test of Infrared Imaging System 焦平面冷反射像在红外成像检测中的应用
The mathematics principles were clarified, the position of matrix CCD on the focal plane and the method of getting input image were presented. 阐述了该方法的数学原理,面阵CCD的安装位置以及输入图像序列的获取方法。
Focal plane: The plane where light entering a lens forms a sharp image. 焦面:光线经过镜头后形成清晰影象的平面。