Formulation for Energy Distribution in T-Junctions for Diplexer Design

Augustine O. Nwajana, E. A. Ogbodo, Ifueko I. Imasuen
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引用次数: 2

Abstract

A new formulation for implementing T-junction matching networks used in diplexer design is proposed in this paper. The investigation exploits the electrical length of quarter-wavelength microstrip transmission lines, and the guided-wavelength of the lines at one giga-Hertz frequency, in achieving the T-junction design formulation. This novel design would eradicate the uncertainties associated with frequent tuning and optimisation of T-junctions to achieve the desired energy distribution in diplexer designs. A prototype diplexer for separating the transmit from the receive frequencies within the front end of a wireless cellular base station is investigated and used to demonstrate the new design method. The prototype microwave diplexer with Tx and Rx centre frequencies of 2680 MHz and 3000 MHz, respectively, have been designed, implemented using microstrip, simulated, and presented. The simulation results of the circuit model and that of the microstrip layout prototype diplexer, demonstrate decent agreement with a high isolation of better than 50 dB between the transmit (Tx) and the receive (Rx) channels. The in-band lowest insertion loss is located at 1.1 dB, with a better than 20 dB in-band return loss across both the Tx and Rx bands.
双工器设计中t结点能量分布公式
本文提出了一种用于双工器设计的t结点匹配网络实现的新公式。该研究利用了四分之一波长微带传输线的电长度,以及在千兆赫频率下导线的引导波长,以实现t结设计公式。这种新颖的设计将消除与频繁调谐和优化t型结相关的不确定性,以实现双工器设计中所需的能量分布。研究了一种用于分离无线蜂窝基站前端发射和接收频率的原型双工器,并用它来演示新的设计方法。设计了Tx和Rx中心频率分别为2680 MHz和3000 MHz的微波双工器原型,并采用微带技术进行了仿真和演示。电路模型和微带布局原型双工器的仿真结果表明,发射(Tx)和接收(Rx)通道之间的高隔离度优于50 dB,具有良好的一致性。带内最低插入损耗位于1.1 dB,在Tx和Rx波段上的带内回波损耗都优于20 dB。
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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