首页> 外文会议>Conference on Infrared Imaging Systems: Design, Analysis, Modeling, and Testing XIV Apr 23-24, 2003 Orlando, Florida, USA >A method for testing the spectral responsivity of infrared cameras using tunable lasers
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A method for testing the spectral responsivity of infrared cameras using tunable lasers

机译:一种使用可调激光器测试红外摄像机光谱响应度的方法

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We are developing a technique for accurately measuring spectral responsivity functions of infrared cameras using tunable lasers. We present preliminary results for uniform scenes where tunable infrared lasers illuminate an integrating sphere, diffusing the light to fill the imaging system optics. A commercial camera based on a liquid nitrogen-cooled InSb focal plane array was tested in the 1.4 micrometer to 4.7 micrometer spectral range using a continuously-tunable periodically-poled lithium niobate (PPLN) optical parametric oscillator. Another commercial camera based on an uncooled microbolometer array was tested using a discrete-tunable CO_2 laser in the 9 micrometer to 11 micrometer spectral range. Results from these tests show that signal-to-noise ratio, uniformity, stability, and other characteristics are favorable for use of this technique in the characterization of infrared imaging systems. We also propose a generalization of this technique, to include scenes with arbitrary, controlled spatial content such as bar patterns or even pictures, by illuminating a commercially-available digital micromirror device (DMD). Dependence on irradiance level, exposure time, and polarization can also be measured. This technique has an inherent advantage over thermal-emitter based methods in that it measures absolute spectral responsivity directly without requiring knowledge of the spectral emissivity or temperature of the source.
机译:我们正在开发一种使用可调激光器准确测量红外摄像机的光谱响应度函数的技术。我们提供了统一场景的初步结果,在这些场景中,可调红外激光器照亮了一个积分球,使光扩散以填充成像系统的光学元件。使用连续可调的周期极化铌酸锂(PPLN)光学参量振荡器,在1.4微米至4.7微米光谱范围内对基于液氮冷却的InSb焦平面阵列的商用相机进行了测试。使用离散冷却的CO_2激光器在9微米至11微米的光谱范围内测试了另一台基于未冷却的测微辐射热计阵列的商用相机。这些测试的结果表明,信噪比,均匀性,稳定性和其他特性有利于在红外成像系统的表征中使用该技术。我们还提出了对此技术的一般化,以通过照亮市售的数字微镜设备(DMD)来包含具有任意受控空间内容的场景,例如条形图甚至图片。还可以测量对辐照度,曝光时间和偏振的依赖性。与基于热发射器的方法相比,该技术具有内在的优势,因为它可以直接测量绝对光谱响应度,而无需了解光源的光谱发射率或温度。

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