Performance investigation of space diversity for a 28/38 GHz MIMO antenna (applicable to mm-wave mobile network)

H. Aliakbari, A. Abdipour, A. Costanzo, D. Masotti, R. Mirzavand, P. Mousavi
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引用次数: 7

Abstract

A multiple-input-multiple-output (MIMO) dual-band antenna system consisting of two elements, each of which built up of circularly polarized slotted patch antenna for mm-wave band 5G wireless handheld and portable terminals is described. Space diversity is used to achieve a good independent channel fading in MIMO systems. In theoretical analysis of MIMO systems often assume that each antenna is isolated from the other elements. It has been shown that the antenna spacing has a significant effect on both near-field and far-field performance of each element in two independent working bands and should be optimized in millimeter wave compact dual-band MIMO arrays. However, the main problem is that an optimized distance for lower band may not be suitable for upper band and vice versa. If electromagnetic limitations and interactions of the antennas are ignored, the MIMO system performance may be underestimated or overestimated.
28/38 GHz MIMO天线空间分集性能研究(适用于毫米波移动网络)
介绍了一种用于毫米波频段5G无线手持和便携式终端的多输入多输出(MIMO)双频天线系统,该系统由两个单元组成,每个单元由圆极化开槽贴片天线组成。在MIMO系统中,利用空间分集实现良好的独立信道衰落。在MIMO系统的理论分析中,通常假设每个天线与其他元件是隔离的。研究表明,天线间距对每个单元在两个独立工作频段的近场和远场性能都有显著影响,在毫米波紧凑型双频MIMO阵列中应进行优化。然而,主要的问题是,一个优化的距离下波段可能不适合上波段,反之亦然。如果忽略天线的电磁限制和相互作用,MIMO系统的性能可能被低估或高估。
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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