高功率微波脉冲在空气中的传播

S. Kuo, Y. S. Zhang
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引用次数: 0

摘要

高功率微波脉冲传播的动态特性取决于脉冲的强度、频率和宽度以及脉冲与空气相互作用过程中发生的物理过程。人们曾尝试通过实验把这些过程挑出来。实验是在一个充满不同压力的干燥空气的大型有机玻璃室内进行的。一个微波脉冲被放置在房间一侧的s波段微波喇叭送入立方体。第二个s波段喇叭放置在室的对面,用来接收发射的脉冲。微波功率由软管调制器驱动磁控管产生。磁控管在3.2 GHz时产生1 mw的峰值输出功率。确定了Paschen击穿条件。确定了造成两种不同程度尾部侵蚀的两种机制。一个自洽的理论模型正在发展,以描述实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Propagation of high power microwave pulses in the air
The dynamic behavior of the propagation of high-power microwave pulses depends on the intensity, frequency, and width of the pulse and the physical processes occurring during the interaction of the pulse with the air. An attempt has been made experimentally to single out these processes. The experiment was conducted in a large Plexiglass chamber filled with dry air at various pressures. A microwave pulse was fed into the cube by an S-band microwave horn placed at one side of the chamber. A second S-band horn placed at the opposite side of the chamber was used to receive the transmitted pulse. The microwave power was generated by a magnetron tube driven by a soft tube modulator. The magnetron produces a 1-MW peak output power at 3.2 GHz. The Paschen breakdown condition was determined. Two mechanisms responsible for two different degrees of tail erosion were identified. A self-consistent theoretical model is being developed to describe the experimental results.<>
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