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Comparison between a low-light-level visible channel and an IR channel for spaceborne night imaging

机译:星载夜间成像的微光可见光通道与红外通道的比较

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Aiming at night time spaceborne imaging, we compare the expected performances of a low-light-level visible sensor with a conventional IR sensor. The low-light-level visible sensor, an electron multiplier CCD (EMCCD), is a close to ideal photon counting device, with possibly negligible dark current noise and negligible readout noise. This fact, along with the significant improvement of diffraction (about an order of magnitude), suggests an interesting competition between the two technologies. In essence, this is a tradeoff between noise and optical performances (favoring the visible channel) and basic target radiance (favoring IR). Other factors such as reliability and cost can also play an important role.While we consider two different spectral ranges with different imaging content, we are able to conduct a cautious theoretical comparison based on standard targets in various lighting conditions. We show that for a given set of system parameters, even when lighting conditions are favorable, i.e. a night with a full moon, the low-light-level visible channel performances are inferior to those of an IR channel. We also comment on the significance of the system working point regarding performances under varying condition.
机译:针对夜间星载成像,我们将微光可见光传感器与常规红外传感器的预期性能进行了比较。低倍可见光传感器,即电子倍增器CCD(EMCCD),是一种接近理想的光子计数设备,暗电流噪声和读出噪声可以忽略不计。这个事实,以及衍射的显着改善(大约一个数量级),表明这两种技术之间发生了有趣的竞争。本质上,这是在噪声和光学性能(有利于可见光通道)和基本目标辐射度(有利于IR)之间的权衡。可靠性和成本等其他因素也可以发挥重要作用。 当我们考虑具有不同成像内容的两个不同光谱范围时,我们能够在各种照明条件下基于标准目标进行谨慎的理论比较。我们表明,对于给定的一组系统参数,即使在光照条件有利的情况下(即满月的夜晚),低光可见光通道的性能也不如IR通道。我们还评论了系统工作点在不同条件下对性能的重要性。

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