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NV-THERM Based Sensor Effects for Imaging Simulations

机译:基于NV-THERM的传感器效果,用于成像仿真

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The Night Vision and Electronics Sensors Directorate Electro-optics Simulation Toolkit (NVEOST), follow-on to Paint-The-Night, produces real time simulation of IR scenes and sequences using modeled backgrounds and targets with physics and empirically based IR signatures. Range dependant atmospheric effects are incorporated, realistically degrading the infrared scene impinging on an infrared imaging device. Current sensor effects implementation for Paint the Night (PTN) and the Night Vision Image Generator (NVIG) is a 3 step process. First the scene energy is further attenuated by the sensor optic. Second, a prefilter kernel developed off-line, is applied to scenes or frames to affect the sensor modulation transfer function (MTF) "blurring" of scene elements. Thirdly, sensor noise is overlaid on scenes, or more often frames of scenes. NVESD is improving the PTN functionality, now entitled NVEOST, in several ways. In the near future, a sensor effects tool will directly read an NVTHERM input data file, extract that data which it can utilize and then automatically generate the sensor "world view" of a NVEOST scenario. These will include those elements currently employed: optical transmission, parameters used to calculate prefilter MTF (telescope, detector geometry) and temporal-spatial random noise (σ_(TVH)). Important improvements will include treatment of sampling effects (under sampling and super-resolution), certain significant postfilters (signal processing including boost and frame integration) and spatial noise. The sensor effects implementation will require minimal interaction; only a well developed NVTHERM input parameter set will be required. The developments described below will enhance NVEOST's utility not only as a virtual simulator but also as a formidable sensor design tool
机译:夜视和电子传感器总局电子光学仿真工具包(NVEOST),是Paint-The-Night的后续产品,使用具有物理特性和基于经验的IR签名的建模背景和目标,对IR场景和序列进行了实时仿真。结合了范围相关的大气效应,实际上降低了撞击在红外成像设备上的红外场景。用于“夜间涂装”(PTN)和“夜视图像生成器”(NVIG)的当前传感器效果实现过程分为3个步骤。首先,场景能量被传感器光学元件进一步衰减。其次,将离线开发的预滤波器内核应用于场景或帧,以影响场景元素的传感器调制传递函数(MTF)“模糊”。第三,传感器噪声叠加在场景上,或更常见的是场景帧上。 NVESD正在以多种方式改进PTN功能(现称为NVEOST)。在不久的将来,传感器效果工具将直接读取NVTHERM输入数据文件,提取可利用的数据,然后自动生成NVEOST场景的传感器“世界视图”。这些将包括当前使用的那些元素:光传输,用于计算预滤波器MTF(望远镜,检测器几何形状)的参数以及时空随机噪声(σ_(TVH))。重要的改进将包括处理采样效果(在采样和超分辨率下),某些重要的后置滤波器(包括升压和帧积分的信号处理)和空间噪声。传感器效果的实现将需要最少的交互。仅需要开发完善的NVTHERM输入参数集。下述开发将增强NVEOST的实用性,不仅可以作为虚拟模拟器,而且可以作为强大的传感器设计工具

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