回波损耗
阻带
插入损耗
威尔金森功分器
谐波
微带线
GSM网络
材料科学
谐波
功率分配器和定向耦合器
电气工程
物理
计算机科学
光电子学
电信
声学
工程类
天线(收音机)
带通滤波器
分频器
电压
作者
Gholamhosein Moloudian,Sepehr Soltani,Sirous Bahrami,John L. Buckley,Brendan O’Flynn,Ali Lalbakhsh
标识
DOI:10.1038/s41598-023-31019-7
摘要
Abstract Conventional Wilkinson power dividers (WPDs) can provide acceptable performance close to the nominal center frequency. However, these WPDs can also exhibit poor out-of-band performance while requiring a large footprint. In order to improve on the current state of the art, a modified microstrip WPD is proposed that exhibits a substantially improved stopband and high isolation. A lowpass filter (LPF) structure is utilized in both branches of the power divider to provide harmonic suppression. According to the obtained results, the input return loss (| S 11 |), output return loss (| S 22 |), output insertion loss (| S 21 |) and isolation (| S 32 |) are better than 34.2 dB, 26.2 dB, 3.52 dB and 31.2 dB, respectively. The proposed modified WPD has a wide 20 dB stopband (from 2.54 GHz to 13.48 GHz) and filters the second to seventh harmonics with attenuation levels of greater than 20 dB. The proposed WPD has a small size of 33.8 mm × 27 mm (0.42 λ g × 0.33 λ g), where λ g is the guided wavelength at the operating frequency of 1.8 GHz. The WPD has been fabricated and tested and shows good agreement between simulated and measured results and the proposed design has desirable characteristics for LTE and GSM applications.
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