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Modeling helix in the presence of step reflections

机译:在有阶跃反射的情况下建模螺旋

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Due to its natural bandwidth, the helix is a slow wave structure (SWS) widely used in the travelling wave tube. Reflections may become a severe problem in the travelling wave amplifier, giving rise to feedback and hence oscillations. In a popularly used method, reflections are measured at the extreme ends of the helix. The helix is sometimes made in many steps, by varying the pitch values, to minimize reflections. A new helix model is taken using the impedance transformation approach considering that impedance values of the helix changes at different steps due to the variation in pitch. A software program, 'SUNREF', has been developed using this theory to calculate the reflections, return loss etc. in the SWS using different steps of pitches between the input and output. Using this approach, designs of the input, output and transition bodies of a C-band 60 W TWT have been studied. The results obtained are very helpful in designing the SWS by predicting the number of steps necessary to achieve the minimum or specified reflections and maximum return loss. The program has been validated using the /spl lambda//2 and /spl lambda//4 transformer theory.
机译:由于其自然带宽,螺旋线是在行波管中广泛使用的慢波结构(SWS)。在行波放大器中,反射可能会成为严重的问题,从而引起反馈并因此引起振荡。在一种普遍使用的方法中,在螺旋线的最末端测量反射。有时会通过改变螺距值以许多步骤制成螺旋线,以最大程度地减少反射。考虑到螺旋线的阻抗值由于螺距的变化而在不同的步骤处变化,因此使用阻抗变换方法采用了新的螺旋线模型。使用该理论开发了软件程序“ SUNREF”,以使用输入和输出之间的不同间距步长来计算SWS中的反射,回波损耗等。使用这种方法,已经研究了C波段60 W TWT的输入,输出和过渡体的设计。通过预测实现最小或指定反射和最大回波损耗所需的步骤数,获得的结果对于设计SWS非常有帮助。该程序已使用/ spl lambda // 2和/ spl lambda // 4转换器理论进行了验证。

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