首页> 外文会议>Conference on Technologies for Synthetic Environments: Hardware-in-the-Loop Testing >Accuracy of aperture irradiances from a resistor-array projection system
【24h】

Accuracy of aperture irradiances from a resistor-array projection system

机译:电阻器阵列投影系统光圈辐射的精度

获取原文
获取外文期刊封面目录资料

摘要

In seekers that never resolve targets spatially, it may be adequate to calibrate only with sources that have known aperture irradiance. In modern missile interceptors, the target becomes spatially resolved at close ranges, and the seeker's ability to accurately measure the radiance at different positions in the scene is also important. Thus, it is necessary to calibrate the seekers with extended sources of known radiance. The aperture irradiance is given by the radiance integrated over the angular extent of the target in the scene. Thus radiance calibrations and accurately presenting the targets spatially produces accurate irradiances. The accuracy of the scene radiance is also important in generating synthetic imagery for testing seeker conceptual designs and seeker algorithms, and for hardware-in-the-loop testing with imaging projection systems. The routine procedure at the Air Force Research Laboratory Munitions Directorate's AFRL/MNGG is to model and project the detailed spatial and radiometric content of the scenes. Hence, accurate depiction of the radiance in the scene is important. AFRL/MNGG calibrates the complete projection system (synthetic image generator and scene projector) with extended sources of known radiance, not unresolved sources of known irradiance. This paper demonstrates that accurate radiance calibrations and accurate spatial rendering do provide accurate aperture irradiances in the projection systems. In recent tests conducted by AFRL/MNGG, the projection system was calibrated in terms of radiance, and the aperture irradiances were determined both as they were observed in the synthetic images that drove the projection system and in the images of the projection system measured by the unit under test. The aperture irradiances were compared with the known truth data and errors were determined. This paper presents results of analyzing the errors associated with the observed aperture irradiances.
机译:在从不到的目标是在空间地解决目标的寻求者中,只有具有已知光圈辐照度的来源的校准可能是足够的。在现代导弹拦截器中,目标在近距离的情况下在空间上解决,寻求者能够准确测量场景中不同位置的辐射的能力也很重要。因此,有必要将寻求者校准具有较大的已知光源来源。孔径辐照度由在场景中靶的角度范围内集成的辐射给出。因此,光线校准和准确地呈现目标空间上产生准确的辐射。场景辐射的准确性在为测试概念性设计和搜索器算法的生成合成图像方面也很重要,以及使用成像投影系统的硬件循环测试。空军研究实验室弹药局的常规程序董事会的AFRL / MNGG是模拟和项目场景的详细空间和辐射率含量。因此,对现场辐射的准确描绘很重要。 AFRL / MNGG将完整投影系统(合成图像发生器和场景投影仪)校准,具有已知光线的扩展来源,而不是已知辐照度的未解析的来源。本文演示了精确的光线校准和精确的空间渲染确实在投影系统中提供精确的孔径辐射。在近期由AFRL / MNGG进行的测试中,投影系统在辐射方面被校准,并且在开发投影系统的合成图像中观察到孔径的孔径辐射,并且在由此测量的投影系统的图像中观察到它们正在测试的单位。与已知的真理数据进行比较孔径辐射,并确定错误。本文介绍了分析与观察到的孔径辐射相关的错误的结果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号