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Investigation of the Slow-Wave Properties of a Dielectric-Lined Azimuthally Periodic Circular Waveguide for TWT

机译:TWT电介质衬里方位角周期性圆波导的慢波特性研究

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摘要

An improved slow-wave structure (SWS), i.e., a dielectric-lined azimuthally periodic circular waveguide (DLAP-CW) that is a modified form of a conventional dielectric-lined circular waveguide (DL-CW), is proposed. The slow-wave characteristics are studied by the spatial harmonics method. Analytical solutions for the dispersion characteristics and interaction impedance are derived. The complicated dispersion equations have numerically been solved with MATLAB, and the results agree well with simulation results obtained from a high-frequency structure simulator. The effects of the SWS parameters on the RF characteristics are investigated. SWS parameters include the dielectric constant and the thickness and location of the metal rods. It is shown that selecting the appropriate thickness and location of the metal rods increases the interaction impedance with only slight influence on the dispersion characteristics (with the dielectric constant held fixed). Furthermore, the DLAP-CW and the conventional DL-CW are compared, and the results validate that the DLAP-CW has the potential for significantly higher interaction impedance at higher frequencies, potentially resulting in a higher gain traveling-wave-tube circuit.
机译:提出了一种改进的慢波结构(SWS),即电介质衬里的方位周期性圆形波导(DLAP-CW),它是常规电介质衬里的圆形波导(DL-CW)的改进形式。通过空间谐波法研究了慢波特性。得出了色散特性和相互作用阻抗的解析解。用MATLAB对复杂的色散方程进行数值求解,结果与高频结构仿真器的仿真结果吻合良好。研究了SWS参数对RF特性的影响。 SWS参数包括介电常数以及金属棒的厚度和位置。结果表明,选择合适的金属棒厚度和位置可以增加相互作用阻抗,而对色散特性的影响很小(介电常数保持固定)。此外,对DLAP-CW和常规DL-CW进行了比较,结果验证了DLAP-CW在更高的频率下具有显着更高的相互作用阻抗的潜力,从而可能产生更高增益的行波管电路。

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