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Dual-Band Devices Based on Coupled Striplines for Different Power Distribution in the Frequency Bands

机译:基于耦合带状线的双频带设备在频带中的不同功率分配

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摘要

AbstractThe approach to the development of dual-band power distribution devices with different power division ratios in different frequency bands, based on the method of a dual-frequency equivalent replacement, is considered in the article. For its implementation, an equivalent four-terminal network based on a section of coupled microstrip transmission lines is proposed in addition to the T- and —type circuits. Relations for calculating the electrical parameters of the circuit elements of these four-pole devices are obtained. The relations allow replacing the transmission line section with different values of the wave impedance in different frequency bands. The electrical length of such a section can vary and be different from π/2. Examples of modeling of non-equilateral power distribution devices with unequal branches such as two-channel balanced dividers and a ring divider (ring coupler) with power division coefficients of 2.0 and 1.0 in frequency bands with center frequencies of 2.0 and 3.6 GHz are given. Experimental measurement of characteristics of the designed models of the two devices showed good agreement between the experiment and the simulation results.
机译: 摘要 基于该方法的不同频段上具有不同功率分配比的双频段配电设备的开发方法本文考虑了双频等效替换的概念。对于其实现,除了T型和-型电路之外,还提出了基于耦合微带传输线的一部分的等效四端网络。获得用于计算这些四极器件的电路元件的电参数的关系。该关系允许用不同频带中的波阻抗的不同值代替传输线部分。这样的部分的电气长度可以变化并且可以不同于π/ 2。给出了在两个中心频率为2.0和3.6 GHz的频段上具有不等分支的非等边配电设备的建模示例,例如两通道平衡分频器和功率分配系数为2.0和1.0的环形分频器(环形耦合器)。对两种设备设计模型的特性进行的实验测量表明,实验与仿真结果吻合良好。

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