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Computationally generated velocity taper for efficiency enhancement in a coupled-cavity traveling-wave tube

机译:计算生成的速度锥度,用于提高耦合腔行波管的效率

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A computational routine has been created to generate velocity tapers for efficiency enhancement in coupled-cavity traveling-wave tubes (TWTs). Programmed into the NASA multidimensional large-signal coupled-cavity TWT computer code, the routine generates the gradually decreasing cavity periods required to maintain a prescribed relationship between the circuit phase velocity and the electron-bunch velocity. Computational results for several computer-generated tapers are compared to those for an existing coupled-cavity TWT with a three-step taper. Guidelines are developed for prescribing the bunch-phase profile to produce a taper for high efficiency. The resulting taper provides a calculated RF efficiency 45% higher than the step taper at center frequency and at least 37% higher over the bandwidth.
机译:已经创建了计算例程以生成速度锥,以提高耦合腔行波管(TWT)的效率。该程序被编程到NASA多维大信号耦合腔TWT计算机代码中,该程序会生成逐渐减小的腔周期,以保持电路相速度和电子束速度之间的规定关系。将几种计算机生成的锥度的计算结果与现有的具有三步锥度的耦合腔体TWT的计算结果进行比较。制定了规定束状相轮廓以产生高效率锥度的准则。所得的锥度提供的计算出的RF效率比中心频率处的步进锥度高45%,并且在带宽范围内至少高37%。

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