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Multi-waveband simulation-based signature analysis of camouflaged human dismounts in cluttered environments with TAIThermIR and MuSES

机译:使用TAIThermIR和MuSES在杂波环境中基于多波段模拟的伪装人类下肢特征分析

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The ability to predict electro-optical (EO) signatures of diverse targets against cluttered backgrounds is paramount for signature evaluation and/or management. Knowledge of target and background signatures is essential for a variety of defense-related applications. While there is no substitute for measured target and background signatures to determine contrast and detection probability, the capability to simulate any mission scenario with desired environmental conditions is a tremendous asset for defense agencies. In this paper, a systematic process for the thermal and visible-through-infrared simulation of camouflaged human dismounts in cluttered outdoor environments is presented. This process, utilizing the thermal and EO/IR radiance simulation tool TAIThermIR (and MuSES), provides a repeatable and accurate approach for analyzing contrast, signature and detectability of humans in multiple wavebands. The engineering workflow required to combine natural weather boundary conditions and the human thermoregulatory module developed by ThermoAnalytics is summarized. The procedure includes human geometry creation, human segmental physiology description and transient physical temperature prediction using environmental boundary conditions and active thermoregulation. Radiance renderings, which use Sandford-Robertson BRDF optical surface property descriptions and are coupled with MODTRAN for the calculation of atmospheric effects, are demonstrated. Sensor effects such as optical blurring and photon noise can be optionally included, increasing the accuracy of detection probability outputs that accompany each rendering. This virtual evaluation procedure has been extensively validated and provides a flexible evaluation process that minimizes the difficulties inherent in human-subject field testing. Defense applications such as detection probability assessment, camouflage pattern evaluation, conspicuity tests and automatic target recognition are discussed.
机译:在杂乱的背景下预测各种目标的电光(EO)签名的能力对于签名评估和/或管理至关重要。目标和背景签名的知识对于各种与国防相关的应用至关重要。虽然没有替代方法可通过测量目标和背景特征来确定对比度和检测概率,但对于具有所需环境条件的任何任务情景进行仿真的功能,对于国防机构来说都是一项巨大的资产。在本文中,提出了在杂乱的户外环境中对伪装的人类下马进行热和可见光-红外模拟的系统过程。该过程利用热和EO / IR辐射模拟工具TAIThermIR(和MuSES),提供了一种可重复且准确的方法来分析人类在多个波段的对比度,特征和可检测性。总结了结合自然天气边界条件和ThermoAnalytics开发的人体温度调节模块所需的工程工作流程。该程序包括使用环境边界条件和主动温度调节来创建人体几何形状,人体分段生理描述以及瞬时物理温度预测。演示了使用Sandford-Robertson BRDF光学表面特性描述并与MODTRAN耦合以计算大气效应的辐射渲染。可以可选地包括诸如光学模糊和光子噪声之类的传感器效果,从而提高了每次渲染后检测概率输出的准确性。该虚拟评估程序已得到广泛验证,并提供了一种灵活的评估过程,可最大程度地减少人类受试者现场测试固有的困难。讨论了防御应用,例如检测概率评估,迷彩图案评估,突显测试和自动目标识别。

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