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The application of time-frequency analysis to high power microwave devices

机译:时频分析在大功率微波设备中的应用

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Research is being condiucted on high power microwave devices (e.g. gyrotrons) at the University of Michigan. Of utmost concern is the phenomenon of pulse shortening. that duration of the microwave pulse is shorter than the duration of the cathode voltage. For years researchers have applied the Fourier transform to the heterodyned microwave signals. The problem with this technique is that a signal with multiple frequency components has the same spetrum as that of a signal with frequency components emitted at different times. Time-frequency analysis (TFA) using Reduced Interference Distributions provided an entirely differnt outlook in the community when it was recently applied to heterodyaned microwave signals. Results show, with unprecedented clarity, made hopping, mode competition, and frequency modulation due to electron beam votage flucturations. The various processes that lead to pulse shortening may finally be identified. Time resolved maximum intensity of the TFA has produced results very similar to the microwave power signal, verifying the utility of TFA in the analysis of the temporal evolution of power in each mode.
机译:密歇根大学正在对高功率微波设备(例如回旋管)进行研究。最令人担忧的是脉冲缩短现象。微波脉冲的持续时间比阴极电压的持续时间短。多年以来,研究人员一直将傅里叶变换应用于外差微波信号。该技术的问题在于具有多个频率分量的信号具有与具有在不同时间发射的频率分量的信号相同的频谱。使用减少干扰分布的时频分析(TFA)在最近应用于杂色微波信号时,在社区中提供了完全不同的前景。结果表明,由于电子束的电压波动,使得跳变,模式竞争和频率调制具有前所未有的清晰度。最终可以确定导致脉冲缩短的各种过程。时间分辨的TFA最大强度产生的结果与微波功率信号非常相似,从而验证了TFA在分析每种模式下功率随时间变化时的效用。

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