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A Varactor-Based Very Compact Tunable Filter with Wide Tuning Range for 4G and Sub-6 GHz 5G Communications

机译:基于变容仪的非常紧凑的可调滤波器具有4G和Sub-6 GHz 5G通信的宽调谐范围

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摘要

A very compact microstrip reconfigurable filter for fourth-generation (4G) and sub-6 GHz fifth-generation (5G) systems using a new hybrid co-simulation method is presented in this manuscript. The basic microstrip design uses three coupled line resonators with λ/4 open-circuited stubs. The coupling coefficients between the adjacent and non-adjacent resonators are used to tune the filter at the required center frequency to cover the frequency range from 2.5 to 3.8 GHz. The coupling coefficient factors between the adjacent resonators are adjusted to control and achieve the required bandwidth, while the input and output external quality factors are adjusted to ensure maximum power transfer between the input and output ports. Two varactor diodes and biasing circuit components are selected and designed to meet the targeted performance for the tunable filter. The impedance bandwidth is maintained between 95 and 115 MHz with measured return losses of more than 17 dB and measured insertion loss of less than 1 dB. Computer simulation technology (CST) is utilized to design and optimize the presented reconfigurable filter, with hybrid co-simulation technique, using both CST microwave studio (MWS) and CST design studio (DS), is applied to build the model by considering the SPICE representation for the varactor switches and all electronic elements of the biasing circuit. The introduced reconfigurable microstrip filter is also fabricated using a Rogers RO3010 material with a relative dielectric constant of 10.1 and it is printed on a very compact size of 13 × 8 × 0.81 mm3. An excellent agreement is obtained between the simulation and measurement performance.
机译:使用新的混合共仿真方法的第四代(4G)和Sub-6 GHz第五代(5G)系统的一个非常紧凑的微带可重新配置滤波器在本手稿中提出。基本的微带设计使用具有λ/ 4开放式短截线的三个耦合线谐振器。相邻和非相邻谐振器之间的耦合系数用于在所需的中心频率下调整滤波器,以覆盖2.5到3.8GHz的频率范围。将相邻谐振器之间的耦合系数因子调整为控制并实现所需的带宽,而调整输入和输出外部质量因子以确保输入和输出端口之间的最大功率传输。选择两个变容二极管和偏置电路部件,并设计成满足可调滤波器的目标性能。阻抗带宽在95和115MHz之间维持,测量返回损耗超过17dB,并测量的插入损耗小于1dB。计算机仿真技术(CST)用于设计和优化所提供的可重新配置滤波器,使用CST微波Studio(MWS)和CST设计Studio(DS)进行混合共同仿真技术,应用于通过考虑香料来构建模型变容仪开关的表示和偏置电路的所有电子元件。引入的可重新配置微带滤波器也使用具有10.1的相对介电常数的rogers RO3010材料制造,并且在13×8×0.81mm3的非常紧凑的尺寸上印刷。在模拟和测量性能之间获得了很好的协议。

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