INNOVATIVE MICROWAVE DESIGN OF FREQUENCY-INDEPENDENT PASSIVE PHASE SHIFTER WITH LCL-NETWORK AND BANDPASS NGD CIRCUIT

Q3 Materials Science
Jamel Nebhen and Blaise Ravelo
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引用次数: 5

Abstract

The present paper develops an application of the bandpass (BP) negative group delay (NGD) circuit for the design of an independent frequency phase shifter (PS). The design principle of the innovative PS is constituted by an inductor-capacitor-inductor (LCL) T-shape passive cell in cascade with RLC-network series-based BP NGD circuits. The S-matrix analytical model of the LCL-NGD PS is established in function of the circuit elements. Then, the design equations of the PS elements in the function of the expected PS value and center frequency are formulated. The NGD PS topology is validated with a comparison between the calculated and simulated results of phase, transmission coefficient, and reflection coefficients. As expected, a very good correlation between the analytical model and the simulation is confirmed by the obtained results. It is found that the LCL-NGD PS presents an outstandingly flat phase shift of -120°±5° with 1.2 GHz center frequency. The LCL-NGD PS operates with about 18% relative bandwidth. The PS reflection coefficient presents a magnitude flatness around -3±1.5 dB. Moreover, the reflection coefficient is kept better than -15 dB. The sensitivity of the LCL-NGD PS performances over the NGD circuit element ±5% relative variation is studied. It is found how the PS value and center frequencychange with the R, L, and C components of the NGD circuit.
基于LCL网络和带通NGD电路的频率相关无源移相器的微波创新设计
本文将带通负群延迟电路应用于独立频率移相器的设计。创新PS的设计原理是由电感-电容-电感(LCL)T形无源单元与基于RLC网络串联的BP NGD电路级联而成。以电路元件为函数,建立了LCL-NGD-PS的S矩阵分析模型。然后,以期望的PS值和中心频率为函数,建立了PS元件的设计方程。通过相位、透射系数和反射系数的计算结果与模拟结果的比较,验证了NGD PS拓扑结构。正如预期的那样,所获得的结果证实了分析模型和模拟之间非常好的相关性。研究发现,LCL-NGD PS在中心频率为1.2GHz的情况下,具有-120°±5°的平坦相移。LCL-NGD PS以大约18%的相对带宽进行操作。PS反射系数呈现出大约-3±1.5 dB的幅度平坦度。此外,反射系数保持在-15dB以上。研究了在NGD电路元件±5%相对变化的情况下,LCL-NGD-PS性能的灵敏度。发现了PS值和中心频率如何随着NGD电路的R、L和C分量而变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Progress in Electromagnetics Research C
Progress in Electromagnetics Research C Materials Science-Electronic, Optical and Magnetic Materials
CiteScore
2.70
自引率
0.00%
发文量
113
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