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首页> 外文期刊>Journal of Spacecraft and Rockets >Prediction of In-Flight Radio Frequency Attenuation by Rocket Plume Applying Diffraction Theories
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Prediction of In-Flight Radio Frequency Attenuation by Rocket Plume Applying Diffraction Theories

机译:应用衍射理论的火箭羽对飞行中射频衰减的预测

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In rocket flights, the ionized exhaust plume of solid rocket motors may interfere with radio frequency transmission under some conditions. It has been reported in many papers that radio frequency propagation is dominated by the diffraction effect around the plume. However, because the plume widely expands at high altitudes, the single knife-edge diffraction theory, the so-called Fresnel diffraction theory, cannot accurately estimate the in-flight radio frequency attenuation. In this paper, a novel diffraction theory that would be more suitable for the widely expanded plume is proposed to analyze the communication between a vehicle and a ground station. The attenuation levels estimated using the single knife-edge diffraction theory and proposed theory are compared with the data recorded inflight. It is found that the new theory proposed in this paper agrees with the measured attenuation level. Based on the theoretical results and the recorded data, the radio frequency transmission characteristics through the exhaust plume are discussed, and it is clarified that in addition to diffraction, both reflection and refraction influence the radio propagation.
机译:在火箭飞行中,固体火箭发动机的电离排气羽流在某些情况下可能会干扰射频传输。在许多论文中已经报道了射频传播主要由烟羽周围的衍射效应决定。但是,由于烟羽在高海拔地区广泛扩展,因此单刀刃衍射理论(即所谓的菲涅耳衍射理论)无法准确估算飞行中的射频衰减。在本文中,提出了一种更适合广泛扩展羽流的新型衍射理论,以分析车辆与地面站之间的通信。使用单刀刃衍射理论和提出的理论估算的衰减水平与飞行中记录的数据进行比较。发现本文提出的新理论与测得的衰减水平一致。根据理论结果和记录的数据,讨论了通过废气羽流的射频传输特性,并阐明了除了衍射之外,反射和折射都影响无线电传播。

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