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A FMM-FFT accelerated hybrid volume surface integral equation solver for electromagnetic analysis of re-entry space vehicles

机译:FMM-FFT加速混合体积表面积分方程求解器,用于再入航天器的电磁分析

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Space vehicles that re-enter the atmosphere often experience communication blackout. The blackout occurs when the vehicle becomes engulfed in plasma produced by interactions between the vehicle surface and the atmosphere. The plasma often is concentrated in a relatively thin shell around the vehicle, with higher densities near its nose than rear. A less structured, sometimes turbulent plasma wake often trails the vehicle. The plasma shell severely affects the performance of side-mounted antennas as it alters their characteristics (frequency response, gain patterns, axial ratio, and impedance) away from nominal, free-space values, sometimes entirely shielding the antenna from the outside world. The plasma plume/turbulent wake similarly affect the performance of antennas mounted at the back of the vehicle. The electromagnetic characteristics of the thin plasma shell and plume/turbulent wake heavily depend on the type of re-entry trajectory, the vehicle's speed, angles of attack, and chemical composition, as well as environmental conditions. To analyze the antennas' performance during blackout and to design robust communication antennas, efficient and accurate simulation tools for charactering the antennas' performance along the trajectory are called for.
机译:重新进入大气层的航天器经常会遇到通信中断的情况。当车辆陷入由车辆表面与大气之间的相互作用所产生的等离子体中时,就会发生停电。等离子体通常集中在车辆周围相对较薄的外壳中,其鼻子附近的密度高于后部。结构较弱,有时会产生湍流的等离子尾流通常会拖到车辆后面。等离子体外壳会严重影响侧面安装天线的性能,因为它会改变其特性(频率响应,增益模式,轴向比率和阻抗),使其偏离标称自由空间值,有时会完全屏蔽天线,使其免受外界干扰。等离子羽流/湍流尾流同样会影响安装在车辆后部的天线的性能。薄等离子体外壳和羽流/湍流尾流的电磁特性在很大程度上取决于重入轨迹的类型,车辆的速度,迎角,化学成分以及环境条件。为了分析停电期间的天线性能并设计坚固的通信天线,需要高效,准确的仿真工具来表征沿轨迹的天线性能。

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