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Modelling and impact of the turbulence effect on flash and cumulative 2D active imaging system

机译:湍流效应对闪光和累积2D主动成像系统的建模与影响

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摘要

In the topic of 2D active imaging systems, two technologies exist for image acquisition. The flash mode consists of a very short and intense laser shot, associated with a short time integration of the sensor (range of hundreds of nanoseconds). The second is the cumulative mode which consists of the integration of many low level energy laser pulses over a long-time integration of the sensor (range of tens of milliseconds). Cumulative mode systems have existed for a long time in the near infrared band. But for the past few years, new sensors are available in the short wave infrared (SWIR) band. Cumulative mode in the SWIR band can provide 2D active imaging systems with very low risk considering the eye safety aspects. Moreover, with a similar design, cumulative systems can overcome the range of flash systems, thanks to their ability to average turbulence effects over the sensor integration time. So, in this paper we have proposed a scintillation noise comparison for each mode. First, we exposed the two types of available models, a numerical model, used for image generation. Second one, an analytical model, used for a quick evaluation of the design of a 2D active imaging system. Both models were compared, especially in their area of validity. Then for a specific scenario, we estimated the gain in term of range performance between a cumulative and a flash system.
机译:在2D主动成像系统的主题中,存在两种技术用于图像采集。闪光模式包括一个非常短而强烈的激光射击,与传感器的短时间集成(数百纳秒的范围)相关联。第二个是累积模式,包括许多低级能量激光脉冲的集成在传感器的长时间集成上(数十毫秒的范围)。累积模式系统在近红外频带中存在很长一段时间。但在过去的几年里,新传感器在短波红外(SWIR)频段中可用。 SWIR带中的累积模式可以提供考虑眼睛安全方面非常低的风险的2D主动成像系统。此外,由于它们的平均湍流效应对传感器集成时间的平均湍流效应的能力,累积系统可以克服闪存系统的范围。因此,在本文中,我们提出了每种模式的闪烁噪声比较。首先,我们暴露了两种类型的可用模型,一个数字模型,用于图像生成。第二个,一种分析模型,用于快速评估2D主动成像系统的设计。两种模型进行了比较,尤其是在他们有效性领域。然后,对于特定方案,我们估计了累积和闪存系统之间的范围性能期限的增益。

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