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首页> 外文期刊>Radio Science >Gabor-based narrow-waisted Gaussian beam algorithm for transmission of aperture-excited 3D vector fields through arbitrarily shaped 3D dielectric layers
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Gabor-based narrow-waisted Gaussian beam algorithm for transmission of aperture-excited 3D vector fields through arbitrarily shaped 3D dielectric layers

机译:基于Gabor的窄腰高斯光束算法,用于通过任意形状的3D介电层传输孔径激励3D矢量场

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摘要

We have previously developed computationally efficient Gabor-based, narrow-waisted (NW), discretized Gaussian beam (GB) algorithms for the determination of the 3D vector fields radiated by 2D arbitrary vector planar aperture distributions. In the present paper, these algorithms are extended to tracking the aperture-generated GBs through polarization-sensitive reflection/transmission interactions with arbitrarily shaped 3D dielectric layers. The resulting tracking scheme is applied to predicting the performance of rotationally symmetric hemispherical and ogival missile radomes, which cover 2D plane truncated apertures on gimbaled (rotatable) platforms. Comparisons with measured data show satisfactory agreement with the analytic predictions.
机译:我们先前已开发出计算效率高的基于Gabor的窄腰(NW),离散高斯光束(GB)算法,用于确定由2D任意矢量平面孔径分布辐射的3D矢量场。在本文中,这些算法被扩展为通过与任意形状的3D介电层的偏振敏感反射/透射相互作用来跟踪孔径生成的GB。所得的跟踪方案可用于预测旋转对称的半球形和弧形导弹天线罩的性能,该天线罩可覆盖万向架(可旋转)平台上的2D平面截断孔径。与实测数据的比较表明与分析预测令人满意。

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