卫星通信系统LPF损耗降低的新方法

Kiran P. Singh, A. Paliwal, M. D. Upadhyay
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引用次数: 3

摘要

本文用两种不同的方法给出了设计最平坦低通滤波器(LPF)时降低损耗的方法。首先采用缺陷接地结构(DGS),其次采用一系列接地片(SGP)进行表面波补偿。设计了截止频率为3ghz的四阶最大平坦低通滤波器。为了实现任意截止频率和阻抗电平规格,通过频率缩放和阻抗变换将其转换为低通滤波器。首先研究了缺陷接地结构降低损耗的方法,然后研究了微带状线上2mm × 2mm小正方形贴片的接地贴片系列结构(SGP)。利用PUFF和IE3D软件进行了仿真,并给出了仿真结果。仿真结果表明,在3 GHz截止频率下,与简单LPF相比,DGS滤波器的反射系数提高了−7.18 dB, SGP滤波器的反射系数提高了−2.56 dB。然而,在2.68 GHz频率下,采用SGP的LPF提高了−20.18 dB。这三种滤波器均采用无缺陷地、有缺陷地和一系列接地片的方式制造。本文给出了用矢量网络分析仪对三种低通滤波器的测量结果。根据实测参数和仿真参数计算了各滤波器的插入损耗、辐射损耗、传输损耗和回波损耗,并报告了各滤波器的群时延。对比分析了三种滤波器在不同损耗、群延迟、理论值和实用值下的性能,结果一致。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel approach for loss reduction in LPF for satellite communication system
This paper gives an approach for loss reduction in the design of maximally flat low pass filter (LPF) using two different methods. First using defected ground structure (DGS) and second by using series of grounded patches (SGP) for surface wave compensation. The fourth order maximally flat low pass filter is designed at cut-off frequency of 3 GHz. To achieve arbitrary cut-off frequency and impedance level specification, it is converted to low pass filter using frequency scaling and impedance transform. Loss reduction is investigated first by defected ground structure and then for series of grounded patches structure (SGP) of small square patches of 2 mm by 2mm on microstripline. The simulation is performed using PUFF and IE3D software and simulation results are reported. Simulation result shows improvement in reflection co-efficient for 3 GHz cut-off frequency by −7.18 dB for filter with DGS and −2.56 dB for filter with SGP, in comparison with simple LPF. However, for 2.68 GHz frequency, LPF with SGP shows −20.18 dB improvements. All the three filters are fabricated i.e. without defected ground, with defected ground and with series of grounded patches. Measured results of all three fabricated low pass filters, using vector network analyser are presented. Insertion loss, radiation loss, transmission loss and return loss are calculated on the basis of the measured and simulated parameters and group delays of each filter are reported. Comparative insight with different losses, group delay and theoretical and practical values for three filters are presented and shows good agreement.
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