Monopole based flower-shaped 4-element MIMO antenna with high diversity performance for 4G: LTE, 5G: sub-6 GHz (n77/n78/n79), WiFi-5 and WiFi-6 bands applications
IF 1.2 4区 工程技术Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
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引用次数: 0
Abstract
In this paper, a monopole-based flower-shaped 4-element multiple-input multiple-output antenna is designed for 4G Long-term evolution bands, 5G sub-6 GHz bands, Wifi-5 and Wifi-6 bands applications. The proposed model is designed and fabricated on low cost FR4 material with a dielectric constant of 4.4 and compactness of 54 × 54 mm2 (0.51 λ0 × 0.51 λ0, where λ0 measured at the lower band) size, having the height of 1.6 mm. The single radiating patch of size 26 × 20 mm2, and it works in the frequency range of 3.34 to 6.32 GHz. Later, four single radiators are placed in an orthogonal manner for isolation enhancement. The working band of the proposed model is 2.88 to 6.12 GHz with isolation more than 15 dB for adjacent elements and better than 20 dB for diagonal elements. The stable radiation patterns and high radiation efficiency values above 90% are achieved in the entire working region. A minimum gain of 2.75 dBi and maximum gain of 5.25 dBi is attained. The diversity characteristics of the proposed model are checked with low Envelope correlation coefficient, high Diversity gain, low Channel capacity loss, good Mean effective gain, and acceptable Total active reflection coefficient values. The proposed model is developed and validated with simulated results, which are in good agreement.
期刊介绍:
Analog Integrated Circuits and Signal Processing is an archival peer reviewed journal dedicated to the design and application of analog, radio frequency (RF), and mixed signal integrated circuits (ICs) as well as signal processing circuits and systems. It features both new research results and tutorial views and reflects the large volume of cutting-edge research activity in the worldwide field today.
A partial list of topics includes analog and mixed signal interface circuits and systems; analog and RFIC design; data converters; active-RC, switched-capacitor, and continuous-time integrated filters; mixed analog/digital VLSI systems; wireless radio transceivers; clock and data recovery circuits; and high speed optoelectronic circuits and systems.