Low-Reflection Signal-Interference Single- and Multipassband Filters With Shunted Lossy Stubs
Signal-interference single- and multiband bandpass-type transversal filtering sections (TFSs) with input- and two-port low-reflection (LR) behavior are reported. These LR TFSs consist of the following three parts: 1) a reflective-type TFS shaped by two in-parallel unequal length transmission line se...
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Published in: | IEEE microwave and wireless components letters Vol. 30; no. 4; pp. 355 - 358 |
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01-04-2020
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Abstract | Signal-interference single- and multiband bandpass-type transversal filtering sections (TFSs) with input- and two-port low-reflection (LR) behavior are reported. These LR TFSs consist of the following three parts: 1) a reflective-type TFS shaped by two in-parallel unequal length transmission line segments; 2) a lossy open-ended stub shunted at the input or both at the input and output nodes of the building reflective-type TFS for the input- and two-port-LR TFS cases, respectively; and 3) input/output power-matching transmission line sections. In this manner, the stopband RF-signal energy that is not transmitted by the reflective-type TFS is dissipated by the resistor(s) of the lossy open-ended stub(s) instead of being reflected back to the source. This allows LR capabilities to be obtained in the overall modified TFSs. The operational principles of the proposed input- and two-port-LR TFSs, along with theoretical design examples and their comparison, are presented. Moreover, multi-TFS-stage LR bandpass filters (BPFs) are shown. They are based on the in-series cascade of several LR TFSs to enlarge the bandwidth and power rejection levels of the stopbands while keeping their LR nature. For experimental validation purposes, microstrip prototypes of a three-TFS-stage BPF with broadened input-LR stopbands and a quintuple-band input-LR TFS are developed and characterized. |
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AbstractList | Signal-interference single- and multiband bandpass-type transversal filtering sections (TFSs) with input- and two-port low-reflection (LR) behavior are reported. These LR TFSs consist of the following three parts: 1) a reflective-type TFS shaped by two in-parallel unequal length transmission line segments; 2) a lossy open-ended stub shunted at the input or both at the input and output nodes of the building reflective-type TFS for the input- and two-port-LR TFS cases, respectively; and 3) input/output power-matching transmission line sections. In this manner, the stopband RF-signal energy that is not transmitted by the reflective-type TFS is dissipated by the resistor(s) of the lossy open-ended stub(s) instead of being reflected back to the source. This allows LR capabilities to be obtained in the overall modified TFSs. The operational principles of the proposed input- and two-port-LR TFSs, along with theoretical design examples and their comparison, are presented. Moreover, multi-TFS-stage LR bandpass filters (BPFs) are shown. They are based on the in-series cascade of several LR TFSs to enlarge the bandwidth and power rejection levels of the stopbands while keeping their LR nature. For experimental validation purposes, microstrip prototypes of a three-TFS-stage BPF with broadened input-LR stopbands and a quintuple-band input-LR TFS are developed and characterized. |
Author | Yang, Li Munoz-Ferreras, Jose-Maria Gomez-Garcia, Roberto |
Author_xml | – sequence: 1 givenname: Roberto orcidid: 0000-0001-9132-6927 surname: Gomez-Garcia fullname: Gomez-Garcia, Roberto email: roberto.gomez.garcia@ieee.org organization: Department of Signal Theory and Communications, Polytechnic School, University of Alcalá, Alcala de Henares, Spain – sequence: 2 givenname: Li orcidid: 0000-0002-1264-4810 surname: Yang fullname: Yang, Li email: li.yang@uah.es organization: Department of Signal Theory and Communications, Polytechnic School, University of Alcalá, Alcala de Henares, Spain – sequence: 3 givenname: Jose-Maria orcidid: 0000-0003-1929-3934 surname: Munoz-Ferreras fullname: Munoz-Ferreras, Jose-Maria email: jm.munoz@uah.es organization: Department of Signal Theory and Communications, Polytechnic School, University of Alcalá, Alcala de Henares, Spain |
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Cites_doi | 10.1109/MWSYM.2019.8700856 10.1109/TMTT.2015.2403841 10.1109/TCSII.2018.2875172 10.1109/LMWC.2018.2868091 10.1109/MWSYM.2009.5165801 10.1049/el.2019.0439 10.1109/TMTT.2017.2734086 10.1109/LMWC.2011.2160164 10.1109/TMTT.2019.2913650 10.1109/TMTT.2017.2716940 10.1109/TMTT.2019.2924975 10.1109/TMTT.2019.2955692 10.1109/LMWC.2018.2884151 10.1109/MMM.2018.2862541 10.1109/LMWC.2005.852797 10.1109/LMWC.2018.2856400 10.1109/TMTT.2019.2914111 |
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References | ref13 ref12 ref15 ref14 (ref2) 2015; 58 ref20 ref11 luo (ref10) 0 ref1 ref17 ref16 ref19 ref8 ref7 ref9 ref4 ref3 ref6 gómez-garcía (ref18) 2019 ref5 |
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SubjectTerms | Absorptive filter Band-pass filters bandpass filter (BPF) Bandwidth low-reflection (LR) filter Microstrip microstrip filter Microwave filters multiband filter Passband planar filter Power transmission lines reflection/transmission zero (RTZ) reflectionless filter Resistors transversal filtering section (TFS) wideband filter |
Title | Low-Reflection Signal-Interference Single- and Multipassband Filters With Shunted Lossy Stubs |
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