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Evaluation of protection measures against laser dazzling for imaging sensors

机译:激光耀眼保护措施的评价

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We present the latest results of our work regarding the evaluation of protection measures against laser dazzling for imaging devices. Three different approaches for the evaluation of dazzled sensor images are investigated and compared to estimate the loss of information due to the dazzle spot by a) counting the number of overexposed pixels, b) based on triangle orientation discrimination (TOD) and c) using the structural similarity (SSIM) index. The performance evaluation approaches are applied on experimental data obtained with two different imaging sensors hardened against laser dazzling. The hardening concept of the first sensor is based on the combination of a spatial light modulator and wavelength multiplexing. This active protection concept allows spatially and spectrally resolved suppression of laser radiation within the sensor's field of view. The hardening concept of the second sensor utilizes the principle of "complementary bands". The optical setup resembles a common 3-chip camera, with the difference that dedicated filters with steep edges replace the regular spectral band filters. Although this concept does not really represent a "protection measure", it allows the sensor to provide information even in laser dazzling situations. The data for the performance evaluation was acquired both in a dedicated laboratory setup using test charts comprising triangles of different size and orientation as well as in field trials.
机译:我们介绍了我们对抗激光耀眼的保护措施的工作的最新成果。研究了三种不同的评估眩目的传感器图像的方法,并比较了通过A)根据三角形方向辨别(TOD)和C)计算由于炫彩斑点的令人眼花点引起的信息丢失结构相似度(SSIM)索引。应用性能评估方法应用于用两种不同的成像传感器获得的实验数据,用于激光炫亮。第一传感器的硬化概念基于空间光调制器和波长复用的组合。该主动保护概念允许在传感器的视野中允许在空间和光谱分辨的激光辐射抑制。第二传感器的硬化概念利用“互补频带”的原理。光学设置类似于一个公共的3芯片相机,差异是具有陡峭边缘的专用过滤器更换常规光谱带滤波器。虽然这个概念并没有真正代表“保护措施”,但它允许传感器即使在激光耀眼的情况下也提供信息。使用包含不同大小和方向的三角形以及现场试验的测试图来获得性能评估的数据。

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