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Numerical Simulation of the Doppler Spectrum of a Flying Target Above Dynamic Oceanic Surface by Using the FEM-DDM Method

机译:基于FEM-DDM方法的动态海洋表面飞行目标多普勒谱的数值模拟

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摘要

To study the Doppler (DP) spectrum of a flying target above dynamic oceanic surface, a two-level quasi-stationary algorithm (TLQSA) of the finite element method (FEM) with domain decomposition (DDM) is developed. The DP spectrum of a fast-moving target requires small time-sampling rate. At most time steps, scattering from the flying target is solved by the FEM solution in only one subdomain. Meanwhile, the interactions between the target and rough sea surface in other subdomains are obtained by solving the global DDM coupling matrices. The slowly moving sea surface is evolved at a larger time step and the DP of oceanic clutter is obtained through all-subdomain FEM calculation. Numerical simulations of the DP spectrum from a target flying above dynamic oceanic surface with and without the presence of a ship-like object are obtained. The functional dependence of the DP spectrum in both the time and frequency domains upon sea surface wind speed, target altitude, observation angle, etc., are demonstrated and discussed.
机译:为了研究动态海洋表面上方飞行目标的多普勒(DP)谱,开发了一种具有域分解(DDM)的有限元方法(FEM)的两级准平稳算法(TLQSA)。快速移动目标的DP光谱需要较小的时间采样率。在大多数时间步长处,来自飞行目标的散射仅在一个子域中通过FEM解决。同时,通过求解全局DDM耦合矩阵获得了目标与其他子域中的粗糙海面之间的相互作用。缓慢移动的海面以较大的时间步长演化,并且通过全子域有限元计算获得了海洋杂波的DP。获得了在有或没有船状物体的情况下从动态海洋表面上方飞行的目标的DP光谱的数值模拟。演示并讨论了DP频谱在时域和频域上对海面风速,目标高度,观测角等的功能依赖性。

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