Synthesis and Design of a New Printed Filtering Antenna
Autor: | Chao-Tang Chuang, Shyh-Jong Chung |
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Rok vydání: | 2011 |
Předmět: |
Power gain
Voltage-controlled filter Computer science Effective radiated power Radiation Antenna tuner Chebyshev filter Microstrip law.invention Microstrip antenna Resonator Band-pass filter law Electronic engineering Dipole antenna Electrical and Electronic Engineering business.industry Antenna measurement Astrophysics::Instrumentation and Methods for Astrophysics Electrical engineering Butterworth filter Filter (signal processing) Antenna factor Antenna efficiency Filter design Return loss Antenna noise temperature Antenna (radio) Selectivity High-pass filter business |
Zdroj: | IEEE Transactions on Antennas and Propagation. 59:1036-1042 |
ISSN: | 1558-2221 0018-926X |
DOI: | 10.1109/tap.2010.2103001 |
Popis: | Synthesis and design of a new printed filtering antenna is presented in this communication. For the requirements of efficient integration and simple fabrication, the co-design approach for the integration of filter and antenna is introduced. The printed inverted-L antenna and the parallel coupled microstrip line sections are used for example to illustrate the synthesis of a bandpass filtering antenna. The equivalent circuit model for the inverted-L antenna, which is mainly a series RLC circuit, is first established. The values of the corresponding circuit components are then extracted by comparing with the full-wave simulation results. The inverted-L antenna here performs not only a radiator but also the last resonator of the bandpass filter. A design procedure is given, which clearly indicates the steps from the filter specifications to the implementation. As an example, a 2.45 GHz third-order Chebyshev bandpass filter with 0.1 dB equal-ripple response is tackled. Without suffering more circuit area, the proposed structure provides good design accuracy and filter skirt selectivity as compared to the filter simple cascade with antenna and a bandpass filter of the same order. The measured results, including the return loss, total radiated power, and radiation gain versus frequency, agree well with the designed ones. |
Databáze: | OpenAIRE |
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