首页> 外文会议>Applied Electromagnetics Conference (AEMC), 2011 IEEE >Reduction of attenuation of e.m wave inside plasma formed during supersonic or hypersonic re-entry of missile like flight vehicles by the application of D.C magnetic field — A technique for mitigation of RF Blackout
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Reduction of attenuation of e.m wave inside plasma formed during supersonic or hypersonic re-entry of missile like flight vehicles by the application of D.C magnetic field — A technique for mitigation of RF Blackout

机译:通过施加D.C磁场来减少导弹等飞行器的超音速或高音速再进入过程中形成的等离子体内部电波的衰减-一种减轻RF停电的技术

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摘要

During re-entry of missile like flight vehicle at supersonic or hypersonic velocity, a high density non-uniform and non-equilibrium plasma sheath is formed around the flight vehicle. This high density plasma has the characteristics to reflect and absorb propagating electromagnetic (e.m) wave which is transmitted to maintain the RF link in between the re-entering flight vehicle and ground based telemetry and radar stations. This paper presents the analysis of attenuation characteristics of e.m wave inside re-entry plasma sheath and explains the region of frequencies of RF-Blackout. It also analyzes the propagation characteristics inside the re-entry plasma in presence of D.C magnetic field applied in the direction normal to the wave front. Finally from the analysis, it finds the strength of magnetic field needed for mitigation of RF Blackout and the problem of dispersion of onboard transmitted signal in the region of frequencies below plasma resonant frequencies while S or C or X band frequencies are in use for transmission of onboard information.
机译:在以超音速或高音速重新进入导弹样飞行器的过程中,在飞行器周围形成了高密度的不均匀且不平衡的等离子体鞘。这种高密度等离子体具有反射和吸收传播的电磁(e.m)波的特性,该电磁波被发送以维持RF链路在重新进入的飞行器与地面遥测和雷达站之间。本文介绍了重入等离子鞘内电磁波的衰减特性,并解释了RF停电的频率范围。它还分析了在垂直于波阵面方向施加DC磁场的情况下重入等离子体内部的传播特性。最后,从分析中发现,在使用S或C或X频段频率传输S或C或X波段的频率时,发现了缓解RF中断所需的磁场强度以及机载发射信号在低于等离子体谐振频率的频率范围内的色散问题。机载信息。

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