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Formation of high power microwave pulses with adjustable parameters in active X-band RF compression systems

机译:有源X波段RF压缩系统中参数可调的高功率微波脉冲的形成

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The work presents the results of theoretical and experimental studies of the formation of microwave pulses with the adjustable power, duration, repetition rate and the envelope form during energy output from the cavity by controlled transformation of the oscillation mode at the waveguide stub coupling aperture. Pulse parameters are changed by adjustable elements of the coupling of modes, which directly affect to the coefficient of the coupling of modes h. The possibility to form a series of subnanosecond MW pulses at a fractional energy output and nanosecond pulses of various pulse duration at a single complete output of high frequency energy from the compressor cavity is demonstrated. The envelope of the pulses is calculated through the recurrence relations between the amplitudes of waves in the system, the relations between which have been recorded according to the scattering matrix method. Using this approach on passive X-band RF pulse compression system, we obtained power gain of 8–9 dB, 8–10 ns pulse duration at 9.248 GHz.
机译:这项工作提出了理论和实验研究的结果,这些结果是通过在波导短截线耦合孔径处控制振荡模式的转换,从腔体输出能量期间形成具有可调功率,持续时间,重复率和包络形式的微波脉冲的结果。脉冲参数由模式耦合的可调元件改变,这直接影响模式h的耦合系数。演示了在分数能量输出处形成一系列亚纳秒级MW脉冲以及在单个完整的高频能量从压缩机腔体输出时形成各种脉冲持续时间的纳秒级脉冲的可能性。脉冲的包络是通过系统中波幅之间的递归关系来计算的,它们之间的关系已根据散射矩阵方法记录下来。使用这种方法在无源X波段RF脉冲压缩系统上,我们在9.248 GHz时获得了8–9 dB的功率增益,8–10 ns的脉冲持续时间。

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