Single-Layer Dual-Mode Microstrip Antenna With No Feeding Network for Pattern Diversity Application
Autor: | Hui Deng, Neng-Wu Liu, Lei Zhu, Zhong-Xun Liu |
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Rok vydání: | 2020 |
Předmět: |
Physics
Acoustics Impedance matching 020206 networking & telecommunications 02 engineering and technology Microstrip law.invention Microstrip antenna law 0202 electrical engineering electronic engineering information engineering Radiator (engine cooling) Wi-Fi Electrical and Electronic Engineering Coaxial Antenna (radio) Envelope (mathematics) |
Zdroj: | IEEE Antennas and Wireless Propagation Letters. 19:2442-2446 |
ISSN: | 1548-5757 1536-1225 |
Popis: | A single-layer microstrip patch antenna (MPA) under the operation of TM10 and TM20 modes for pattern diversity application without needing to rely on any feeding network is proposed for the first time in this letter. Initially, when a thorough analysis on mode excitation and inhibition of the MPA was deeply conducted, it demonstrated that its TM10 and TM20 modes could be independently excited by properly placing two coaxial ports underneath the radiating patch; thus, generating the desired broadside and bidirectional radiation patterns, respectively. Then, two sets of shorting pins are inserted below the core radiator, aiming to raise the resonant frequency of its TM10 mode in proximity to that of the TM20 mode. In addition, the maximum input resistances of these dual radiative modes decrease dramatically as f 10 and f 20 increase, which enables good impedance matching. Finally, the proposed MPA is designed, fabricated, and tested to validate the working principle. The results illustrate that this antenna can operate over the overlapping frequency ranges of 5.83–5.89 GHz with an envelope correlation coefficient of lower than 0.015, while keeping its low-profile thickness of 0.045λ0. Due to its unique advantages of low profile, simple structure, and good diversity, the proposed MPA could be a promising option in wireless local area network (WLAN)-related applications. |
Databáze: | OpenAIRE |
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