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Design of target support columns using EPS foam

机译:使用EPS泡沫的目标支撑柱设计

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When making RCS measurements on a ground-bounce range, EPS foam columns are frequently used as target supports for test bodies and air vehicles. Since background subtraction is rarely used to suppress foam-column scattering in large-scale RCS measurements, the columns must be structurally sound while maintaining a minimized RCS signature over the aspect angles, and radar frequency band, of interest. The goal is to devise a column that is unnoticeable in the measured data, yet strong enough to support a specified weight. The major factor that contributes to EPS foam-column scattering is shaping, and finding the optimal shape for a particular test is not trivial. Part 1 of this paper describes methods in the design and construction of EPS foam columns. Subjects include determination of EPS material properties, mathematical specification of column geometries, accurate and efficient computation of column mechanics and scattering, and effective optimization of column parameters. Part 2 of this paper shows comparisons of predicted column RCS to column measurements performed at NRTF. These comparisons give credibility to the concept of foam-column modeling and ground-bounce range scattering simulations, and give range engineers confidence in the foam-column design process.
机译:在地面反弹范围内进行RCS测量时,EPS泡沫柱通常用作测试车体和飞行器的目标支撑。由于在大型RCS测量中很少使用背景减法来抑制泡沫柱散射,因此色谱柱必须结构合理,同时在感兴趣的纵横角和雷达频段上保持最小的RCS签名。目的是设计一种在测量数据中不明显但强度足以支撑指定重量的色谱柱。导致EPS泡沫柱散射的主要因素是成型,并且找到特定测试的最佳形状并非易事。本文的第1部分描述了EPS泡沫塔的设计和构造方法。主题包括EPS材料属性的确定,色谱柱几何形状的数学规格,色谱柱力学和散射的准确高效计算以及色谱柱参数的有效优化。本文的第2部分显示了预测的色谱柱RCS与NRTF进行的色谱柱测量值的比较。这些比较为泡沫柱建模和地面反弹距离散射模拟的概念提供了可信度,并使测量范围工程师对泡沫柱设计过程充满信心。

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