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A Model and Simulation to Predict the Performance of Angle-Angle-Range 3D Flash LADAR Imaging Sensor Systems

机译:预测角度-角度-范围3D闪存LADAR成像传感器系统性能的模型和仿真

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BAE SYSTEMS reports on a program to develop a high-fidelity model and simulation to predict the performance of angle-angle-range 3D flash LADAR Imaging Sensor systems. 3D Flash LADAR is the latest evolution of laser radar systems and provides unique capability in its ability to provide high-resolution LADAR imagery upon a single laser pulse; rather than constructing an image from multiple pulses as with conventional scanning LADAR systems. However, accurate methods to model and simulate performance from these 3D LADAR systems have been lacking, relying upon either single pixel LADAR performance or extrapolating from passive detection FPA performance. The model and simulation developed and reported here is expressly for 3D angle-angle-range imaging LADAR systems. To represent an accurate "real world" type environment, this model and simulation accounts for: 1) laser pulse shape; 2) detector array size; 3) atmospheric transmission; 4) atmospheric backscatter; 5) atmospheric turbulence; 6) obscurants, and; 7) obscurant path length. The angle-angle-range 3D flash LADAR model and simulation accounts for all pixels in the detector array by modeling and accounting for the non-uniformity of each individual pixel in the array. Here, noise sources are modeled based upon their pixel-to-pixel statistical variation. A cumulative probability function is determined by integrating the normal distribution with respect to detector gain, and, for each pixel, a random number is compared with the cumulative probability function resulting in a different gain for each pixel within the array. In this manner very accurate performance is determined pixel-by-pixel. Model outputs are in the form of 3D images of the far-field distribution across the array as intercepted by the target, gain distribution, power distribution, average signal-to-noise, and probability of detection across the array. Other outputs include power distribution from a target, signal-to-noise vs. range, probability of target detection and identification, and NEP vs. gain.
机译:BAE SYSTEMS报告了一个程序,该程序用于开发高保真模型和仿真,以预测角度-角度范围3D闪光灯LADAR成像传感器系统的性能。 3D Flash LADAR是激光雷达系统的最新发展,并提供了在单个激光脉冲上提供高分辨率LADAR图像的独特能力;而不是像传统的扫描LADAR系统那样从多个脉冲构造图像。但是,缺少依靠这些3D LADAR系统建模和仿真性能的准确方法,这些方法依赖于单像素LADAR性能或被动检测FPA性能的推断。此处开发和报告的模型和仿真明确适用于3D角度-角度范围成像LADAR系统。为了表示准确的“现实世界”类型的环境,此模型和仿真说明:1)激光脉冲形状; 2)检测器阵列尺寸; 3)大气传输; 4)大气反向散射; 5)大气湍流; 6)遮盖剂;以及7)模糊路径的长度。角度-角度-范围3D闪光灯LADAR模型和仿真通过对阵列中每个像素的不均匀性进行建模和计算,说明了探测器阵列中的所有像素。在这里,噪声源是基于其像素间的统计差异进行建模的。通过对检测器增益的正态分布进行积分来确定累积概率函数,并且对于每个像素,将随机数与累积概率函数进行比较,从而为阵列中的每个像素带来不同的增益。以这种方式,逐个像素确定非常精确的性能。模型输出为目标所截获的整个阵列的远场分布的3D图像,增益分布,功率分布,平均信噪比和整个阵列的检测概率。其他输出包括目标功率分布,信噪比与范围,目标检测和识别的概率以及NEP与增益的关系。

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