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Analysis of RCS of Low Observable Aircraft in VHF Band

机译:VHF频段低可观测飞机RCS分析

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Electromagnetic signatures of a low observable aircraft have been studied in VHF band. First of all, a three-dimensional model of the aircraft has been established for numerical computation. Then, monostatic and bistatic radar cross sections (RCS) have been calculated. The model of the aircraft is made by a curved surface, and commercial as well as in-house three-dimensional electromagnetic code which is based on the method of moments (MoM) is utilized to calculate the RCS. A characteristic basis function method (CBFM) and a multilevel fast multipole algorithm (MLFMA) have been applied to analyze electrically large objects. The change of the monostatic RCS is very large depending on the direction of the incident wave. The maximum value is about 42 dBsm at the top and bottom of the aircraft, and the minimum value is about −10 dBsm at the front and back of the aircraft. It is found that the bistatic RCS also changes dramatically depending on the direction of the incident wave. The direction of maximum RCS occurs around specular reflection, and the value of maximum RCS ranges from 27 dBsm to 43 dBsm. On the other hand, the direction of the minimum RCS occurs irregularly, and the value is in the level of −30 dBsm.
机译:在VHF波段研究了低可观测飞机的电磁信号。首先,已经建立了飞机的三维模型用于数值计算。然后,已计算出单基地和双基地雷达的横截面(RCS)。飞机的模型是由曲面制成的,并利用基于动量法(MoM)的商业以及内部三维电磁代码来计算RCS。特征基函数方法(CBFM)和多级快速多极算法(MLFMA)已被用于分析大型电气物体。单静态RCS的变化取决于入射波的方向。在飞机的顶部和底部,最大值约为42 dBsm,在飞机的正面和背面,最小值约为-10 dBsm。已经发现,双基地RCS也根据入射波的方向而急剧变化。最大RCS的方向围绕镜面反射发生,最大RCS的值范围为27 dBsm至43 dBsm。另一方面,最小RCS的方向不规则地出现,并且该值处于-30 dBsm的水平。

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