FEM, FDTD and Wave Matrix Methods Application for Modeling of Phase Shifting Devices Based on a Waveguide with Diaphragms

Luny Vesperum, A. Bulashenko, S. Piltyay, V. Potapenko, H. Matkovska, Vitalina Dmytrenko
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Abstract

In present work, a theoretical and computer-aided studies of a waveguide phase shifter for the frequency band 7.5-8.5 GHz were carried out. Frequency dependences of phase differential at the external port of the device, the standing wave coefficient and the voltage were analyzed, respectively, for a phase of 45 and 90 degrees. A theoretical analysis of the basic performances of a phase-shifting device that was created on the basis of a rectangular guide with conductiong diaphragms has been carried out. The design and characteristics of the phase shifter were given to obtain a phase shift of 45 and 90 degrees. It has been shown that designs of such devices that consist of several such sections have sufficiently effective characteristics. The paper demonstrates a comparison of the numerical dependences of the developed phase-shifting device obtained by FEM, FDTD and wave matrix methods. Proposed designs of phase shifters can be used for modern telecommunication systems for transmitting and processing information.
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基于膜片波导相移器件的有限元法、时域有限差分法和波矩阵法建模
本文对7.5-8.5 GHz频段的波导移相器进行了理论和计算机辅助研究。分别分析了45度相位差、90度相位差、驻波系数和电压的频率依赖性。本文从理论上分析了基于带导电隔膜的矩形波导的移相器件的基本性能。给出了移相器的设计和特性,实现了45度和90度的移相。已经证明,由几个这样的部分组成的这种装置的设计具有足够有效的特性。本文用有限元法、时域有限差分法和波动矩阵法对所研制的移相装置的数值相关性进行了比较。所提出的移相器设计可用于现代通信系统的信息传输和处理。
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