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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Uncertainty RCS Computation for Multiple and Multilayer Thin Medium-Coated Conductors by an Improved TDS Approximation
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Uncertainty RCS Computation for Multiple and Multilayer Thin Medium-Coated Conductors by an Improved TDS Approximation

机译:通过改进的TDS近似对多层和多层细介质涂覆导体的不确定度RCS计算

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摘要

An efficient uncertainty RCS computation technology is proposed to analyze the EM scattering from 3-D medium-coated targets with varying geometrical shapes. First, the scattering target is described by a nonuniform rational B-spline surface, where the uncertain units are described by several independent random variables. Then, an improved thin dielectric sheet-based method of moments is presented to model the scattering from the multiple and multilayer thin medium-coated objects. As a result, only unknowns exist on the target’s outer surface, and the computational resources can significantly be saved in comparison with solvers that associate unknowns with all the surfaces and interfaces. It should also be noted that the half RWG basis functions are introduced at the interface of different media for multiple medium-coated conductors. Finally, both the mean value and variance of the scattering electric current are derived by applying a perturbation approach to account for the target’s uncertain variable geometry. Moreover, the validity of the proposed method is verified in comparison with the traditional Monte Carlo (MC) method, which is used to solve several certain problems, and it is found that the proposed method can provide higher efficiency compared with the MC method.
机译:提出了一种有效的不确定性RCS计算技术,以分析来自不同几何形状的3-D中涂层靶的EM散射。首先,散射靶由不均匀的B样条表面描述,其中不确定单元由几个独立的随机变量描述。然后,提出了一种改进的薄介质片的矩,以模拟来自多层薄介质涂覆的物体的散射。结果,只有未知值存在于目标的外表面上,并且可以显着保存计算资源,与将未知的求解器与所有曲面和接口相关联。还应注意,在不同介质的不同介质的界面中引入半RWG基函数,用于多个中涂层导体。最后,通过应用扰动方法来解释目标不确定的可变几何形状来导出散射电流的平均值和方差。此外,与传统的蒙特卡罗(MC)方法相比,验证了所提出的方法的有效性,该方法用于解决几个问题,并且发现所提出的方法可以与MC方法相比提供更高的效率。

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