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Parametric Design of a Class of Full-Band Waveguide Differential Phase Shifters

机译:一类全波段波导差分移相器的参数设计

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摘要

Differential phase shifters are common circuits in communication systems where a fixed phase difference between two points within the circuit is required. Among the available technologies, waveguide phase shifters are preferred for applications such as antenna feed or beam-forming networks. Typical designs in the literature are devoted to specific phase delays such as 90° or 180°, but any phase shift might be required, and therefore a design procedure resulting in mechanically-related parameter fitting equations for any arbitrary phase difference would be advantageous. This paper presents a parametric design of full-band (40% relative bandwidth) waveguide differential phase shifters, providing polynomial equations for all design parameters in order to obtain arbitrary phase shifts between standard rectangular waveguides with equal physical lengths. The phase shift is achieved through the use of a multi-step ridge section together with a single width-step in the shift line. The proposed design procedure results in differential phase shifters with 25 dB of return loss and minimal physical length for any phase shift between 0° and 180°. To validate this parametric design process, two exemplary differential phase shifters with 30° and 140° phase shifts were measured, showing very good agreement with the simulated results.
机译:差分移相器是通信系统中的常见电路,其中电路内两点之间需要固定的相位差。在可用技术中,波导移相器对于诸如天线馈电或波束形成网络的应用是优选的。文献中的典型设计致力于特定的相位延迟,例如90°或180°,但是可能需要任何相移,因此,针对任何任意相位差产生与机械相关的参数拟合方程的设计过程将是有利的。本文介绍了全频带(相对带宽为40%)波导差分移相器的参数设计,为所有设计参数提供了多项式方程式,以便在具有相同物理长度的标准矩形波导之间获得任意相移。通过使用多级脊部分和移位线上的单个宽度步长来实现相移。拟议的设计程序导致差分移相器具有25 dB的回波损耗,并且对于0°至180°之间的任何相移,其最小物理长度都是最小的。为了验证该参数化设计过程,对两个具有30°和140°相移的示例性差分移相器进行了测量,与模拟结果非常吻合。

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