Dual-Polarized High-Gain Microstrip Antenna for MIMO Wireless Communication Systems

Yijing He, Yue Li, Zhijun Zhang, Zhenghe Feng
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引用次数: 1

Abstract

In this paper, a method of achieving dual-polarized high-gain microstrip antenna for MIMO wireless communication applications is proposed utilizing the slot-loaded higher order mode. By loading half-wavelength slots on electric field nulls of ordinary microstrip antenna operating at higher order mode, equivalent in-phase magnetic current array can be constructed within a single low-profile cavity using simple feed technique. To verify the proposed method, a dual-polarized TM50-mode microstrip antenna with a maximum measured gain of 10.9 dBi is presented firstly, using single-layered substrate and a pair of single feeds. Further, a dual-polarized high-gain magnetic current array with a pair of differential feeds is demonstrated utilizing TM90 mode, achieving a maximum measured gain of 15.5 dBi. Moreover, the low envelop correlation coefficient indicates the good diversity performance of the proposed antennas. The proposed method has the merits of low profile, high isolation and simple feeding, with promising usage in MIMO and diversity applications.
用于MIMO无线通信系统的双极化高增益微带天线
本文提出了一种利用隙载高阶模式实现MIMO无线通信应用中双极化高增益微带天线的方法。通过在普通微带天线高阶模式电场零点处加载半波长槽,利用简单的馈电技术,可以在单个低轮廓腔内构建等效同相磁流阵列。为了验证所提出的方法,首先采用单层衬底和一对单馈源设计了一个最大测量增益为10.9 dBi的双极化tm50模式微带天线。此外,利用TM90模式演示了具有一对差分馈电的双极化高增益磁流阵列,最大测量增益为15.5 dBi。此外,低包络相关系数表明该天线具有良好的分集性能。该方法具有姿态低、隔离度高、馈电简单等优点,在MIMO和分集应用中具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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