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Improved acquisition capabilities of tactical IR seekers modeled with the infrared sensor performance analysis model

机译:以红外传感器性能分析模型为模型的战术红外导引头的改进的采集能力

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Abstract: The Infrared Sensor Performance Analysis Model (ISPAM) is a statistical tool used to evaluate detection and acquisition performances of IR sensors and seekers. ISPAM has become increasingly important in providing performance estimates for developmental infrared seekers. While models with varying degrees of freedom offer higher fidelity, the ISPAM model offers quick-look performances with relative ease particularly important in the early design phase of programs. Recent modifications to the model have been necessary to improve the fidelity in areas such as complex background clutter, signal processing techniques, and target discrimination. The model now more accurately represents the performance of state-of-the-art tactical IR sensors and seekers. In support of these modifications, the effectiveness of signal processing for target discrimination in a variety of clutter backgrounds was recently evaluated. An algorithm testbed utilizing a generic tracker and various spatial and temporal processing techniques was used in a Monte Carlo fashion to determine acquisition ranges based on each technique. Results of one of these spatial processes, an anti-median filter, were compared to field test data generated using this same processing technique by a current developmental seeker and tracker. The acquisition ranges from this field test were compared with that of the ISPAM model. This paper will address the general methodology of ISPAM's performance prediction, and the effectiveness of signal processing on target acquisition and tracking determined from the algorithm testbed.!3
机译:摘要:红外传感器性能分析模型(ISPAM)是用于评估红外传感器和搜寻器的检测和采集性能的统计工具。 ISPAM在为发展中的红外搜寻器提供性能评估方面变得越来越重要。尽管具有不同自由度的模型提供了更高的保真度,但是ISPAM模型相对容易地提供了快速查看的性能,在程序的早期设计阶段尤为重要。最近有必要对模型进行修改,以提高诸如复杂背景杂波,信号处理技术和目标识别等领域的保真度。现在,该模型可以更准确地表示最新型战术红外传感器和搜寻器的性能。为了支持这些修改,最近评估了信号处理在各种杂乱背景下进行目标识别的有效性。使用通用跟踪器以及各种空间和时间处理技术的算法测试台以蒙特卡洛的方式用于确定基于每种技术的采集范围。这些空间过程之一的结果,即反中值滤波器,与当前的发展搜寻器和跟踪器使用相同的处理技术生成的现场测试数据进行了比较。将该现场测试的采集范围与ISPAM模型的采集范围进行了比较。本文将讨论ISPAM性能预测的一般方法,以及从算法测试台确定的信号处理对目标获取和跟踪的有效性。!3

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