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Validation of the NATO-standard ship signature model (SHIPIR)

机译:北非标准船舶签名模型的验证(SAPIR)

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An integrated naval infrared target, threat and countermeasure simulator (SHIPIR/NTCS) has been developed. The SHIPIR component of the model has been adopted by both NATO and the US Navy as a common tool for predicting the infrared (IR) signature of naval ships in their background. The US Navy has taken a lead role in further developing and validating SHIPIR for use in the Twenty-First Century Destroyer (DD-21) program. As a result, the US Naval Research Laboratory (NRL) has performed an in-depth validation of SHIPIR. This paper presents an overview of SHIPIR, the model validation methodology developed by NRL, and the results of the NRL validation study. The validation consists of three parts: a review of existing validation information, the design, execution, and analysis of a new panel test experiment, and the comparison of experiment with predictions from the latest version of SHIPIR (v2.5). The results show high levels of accuracy in the radiometric components of the model under clear-sky conditions, but indicate the need for more detailed measurement of solar irradiance and cloud model data for input to the heat transfer and in-band sky radiance sub-models, respectively.
机译:已经开发了一个集成的海军红外目标,威胁和对抗模拟器(SAPIR / NTC)。该模型的船舶组成部分已被北约和美国海军采用,作为预测海军船舶红外(IR)签名的共同工具。美国海军在进一步发展和验证的Shipir中采取了主导作用,以便在二十一世纪的驱逐舰(DD-21)计划中使用。因此,美国海军研究实验室(NRL)已经进行了对船员的深入验证。本文提出了船舶概述,由NRL开发的模型验证方法以及NRL验证研究的结果。验证包括三个部分:对新面板测试实验的现有验证信息,设计,执行和分析以及从最新版本的Shipir(v2.5)的实验比较。结果在明确的天空条件下显示了模型的辐射成分的高度精度,但表明需要更详细地测量太阳辐照度和云模型数据,以输入传热和带内天空辐射子模型, 分别。

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