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Advanced Rotorcraft Helmet Mounted Display Sighting System (HMDSS) Optical Distortion Correction Methodology

机译:先进的旋翼飞机头盔安装显示瞄准系统(HMDSS)光学失真校正方法

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Helmet Mounted Displays (HMDs) typically utilize off axis optical systems that result in distorted images. In order to minimize the weight on the pilot's head, a pixilated display, such as an Active Matrix liquid Crystal Display (AMLCD), is utilized as the imaging source. Pixelated displays based on AMLCDs cannot correct distortions or perform spatial transformations as easily a an analog CRT-based systems using electron beam deflection. An advanced rotorcraft HMDSS is a digital system where correcting the distortion within the digital domain is desired to eliminate the inaccuracies of converting to analog, correcting the distortion and converting back to digital. Other system requirements necessitate that the input video be rescaled to provide the proper image to the optical system in order to have the FLIR imagery overlay the real world as the pilot looks through the canopy. To optimize image resolution with minimum sensor size, the FLIR system scans in column mode. As this is not compatible with conventional AMLCD scanning, the FLIR video data must be converted to a row scan. This function, which normally results in additional frame delay, will also be described, together with methods for reducing the latency. The physical constrains of the helmet and the desire to use identical AMLCD devices meant that the devices are rotated between sides of the helmet. This rotation requires that the video image be scanned horizontally and vertically flipped creating another complexity in the design. Requirements for a helmet mounted image intensified television camera to be displayed as an image by itself or overlaid with symbology provided from external video creates additional complexity for distortion correction within the optical chain and will be discussed in this paper. All of these modes require that the video be manipulated in varying degrees of complexity. The enabling technology described in this paper is a complex integrated circuit that allows the user to program the required functions of rotation, scaling, overlays and distortion with minimum latency achieving an effective solution for an advanced rotorcraft Helmet Mounted Display Sight Subsystem (HMDSS).
机译:头盔安装显示器(HMDS)通常利用导致图像失真的轴光学系统。为了最小化飞行员头上的重量,使用像素的像素显示器,例如有源矩阵液晶显示器(AMLCD)作为成像源。基于AMLCD的像素化显示器不能校正失真或者使用电子束偏转容易地执行基于模拟CRT的系统的空间变换。先进的旋翼飞机HMDSS是一种数字系统,需要纠正数字域内的失真,以消除转换成模拟,纠正失真并转换回数字的不准确性。其他系统要求需要输入视频,以便为光学系统提供适当的图像,以使FLIR图像覆盖现实世界,因为飞行员透过树荫。为了优化具有最小传感器尺寸的图像分辨率,FLIR系统在列模式下扫描。由于这与传统的AMLCD扫描不兼容,因此必须将FLIR视频数据转换为行扫描。该函数通常还将描述额外的帧延迟,以及降低延迟的方法。头盔的物理约束和使用相同的AMLCD装置的愿望意味着装置在头盔的侧面之间旋转。该旋转要求水平扫描视频图像,并垂直翻转在设计中产生另一种复杂性。对头盔安装的图像增强电视摄像机的要求作为图像自身显示或覆盖外部视频提供的符号系统,在光链内产生额外的变形校正,并将在本文中讨论。所有这些模式都要求在不同程度的复杂性中操纵视频。本文中描述的启用技术是一个复杂的集成电路,允许用户编程旋转,缩放,覆盖和失真的所需功能,其最小延迟实现了高级旋电手机安装瞄准瞄准子系统(HMDS)的有效解决方案。

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