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Chun-Xu Mao

Researcher at University of Surrey

Publications -  88
Citations -  2566

Chun-Xu Mao is an academic researcher from University of Surrey. The author has contributed to research in topics: Microstrip antenna & Patch antenna. The author has an hindex of 23, co-authored 71 publications receiving 1624 citations. Previous affiliations of Chun-Xu Mao include University of Kent & South China University of Technology.

Papers
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Compact Coradiator UWB-MIMO Antenna With Dual Polarization

TL;DR: In this paper, two compact coradiator multiple-input-multiple-out (MIMO) antennas operating in the UWB frequency band with dual polarization were proposed, where the radiator is shared by two antenna elements, which greatly reduce the overall size of the MIMO system.
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A Shared-Aperture Dual-Band Dual-Polarized Filtering-Antenna-Array With Improved Frequency Response

TL;DR: In this article, a dual-band dual-polarized array antenna with low frequency ratio and integrated filtering characteristics is proposed, which employs a dualmode stub-loaded resonator to feed and tune with two patches, resulting in the reduction of the feed networks and the input ports.
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Multimode Resonator-Fed Dual-Polarized Antenna Array With Enhanced Bandwidth and Selectivity

TL;DR: In this article, a multimode filtering antenna, which is realized by integrating a multi-modal resonator and an antenna, has been applied to the design of dual-polarized antenna arrays for achieving a compact size and high performance in terms of broad bandwidth, high-frequency selectivity and out-of-band rejection.
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Dual-Band Patch Antenna With Filtering Performance and Harmonic Suppression

TL;DR: In this article, a low-profile aperture-coupled U-slot patch antenna is employed for the dual-band operation with a uniform polarization, which is fed by a dual-mode stub-loaded resonator (SLR).
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Dual-Band Circularly Polarized Shared-Aperture Array for $C$ -/ $X$ -Band Satellite Communications

TL;DR: The presented method, instead of conventional methods that power dividers and phase delay lines are usually required, not only significantly enhances the bandwidths of the antenna but also results in a compact feed, reduced loss and high gain.