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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Total-Field/Scattered-Field Formulation for FDTD Analysis of Plane-Wave Propagation Through Cold Magnetized Plasma Sheath
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Total-Field/Scattered-Field Formulation for FDTD Analysis of Plane-Wave Propagation Through Cold Magnetized Plasma Sheath

机译:通过冷磁化等离子体护套的平面波传播FDTD分析的总场/散射场配方

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摘要

Modeling wideband plane-wave propagation through a stratified magnetized plasma sheath is important toward predicting the quality of communications during re-entry, scattering caused by electron density perturbations, and many other applications. When using the finite-difference time-domain (FDTD) method to solve the problem, modeling the incident field in the simulation domain is difficult if the incident field travels obliquely to the grid axes. In this article, a total-field/scattered-field (TF/SF) formulation whereby a plane-wave source is introduced into cold layered magnetized plasma has been developed for the FDTD method. Based on phase matching theory, twelve auxiliary 1-D propagators are specified to calculate the correction field values for the TF/SF boundary. A modified convolution perfect match layer (CPML) is implemented to terminate the 1-D propagators. Numerical results are also presented to show the accuracy and effectiveness of the method. Although this method is developed for magnetized plasma, the extension to other anisotropic dispersive layered media is straightforward.
机译:通过分层磁化等离子体鞘模拟宽带平面波传播对于预测再入期间的通信质量,由电子密度扰动引起的散射以及许多其他应用。当使用有限差分时间域(FDTD)方法来解决问题时,如果入射的场倾斜地向电网轴倾斜,则建模模拟域中的入射场很难。在本文中,已经为FDTD方法开发了总场/散射场(TF / SF)制剂,由此引入了平面波源的冷层磁化等离子体。基于相位匹配理论,指定了十二个辅助1-D传播器以计算TF / SF边界的校正场值。改进的卷积完美匹配层(CPML)被实现为终止1-D传播者。还提出了数值结果以显示该方法的准确性和有效性。虽然该方法是为磁化等离子体开发的,但是对其他各向异性分散层介质的延伸是简单的。

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