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On Modeling RCS of Aircraft for Flight Simulation

机译:用于飞行模拟的飞机RCS建模

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摘要

This paper investigates the implementation of the radar cross section (RCS) of aircraft in modeling and simulation (M&S). More specifically, it addresses the tradeoff between accuracy and computational cost introduced by spatial RCS fluctuations. High-resolution RCS matrices, generated using Physical Optics (PO), were used in an investigation of RCS matrix resolution, and an evaluation of different bilinear interpolation methods is presented. The spatial Fourier transform was used for resolution analysis. It was found that the smallest RCS interpolation error was obtained using splines. Furthermore, results showed that the distribution of the relative interpolation error in detection range was well approximated by a log-normal distribution.
机译:本文研究了飞机雷达截面(RCS)在建模和仿真(M&S)中的实现。更具体地说,它解决了空间RCS波动引起的精度和计算成本之间的折衷。使用物理光学(PO)生成的高分辨率RCS矩阵用于RCS矩阵分辨率的研究,并提出了对不同双线性插值方法的评估。使用空间傅里叶变换进行分辨率分析。发现使用样条曲线可获得最小的RCS内插误差。此外,结果表明,相对内插误差在检测范围内的分布通过对数正态分布很好地近似。

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