Xu Su, Zhang Ming, Wen Huailin, Wang Jun
Huawei Technologies Co., Ltd., Hangzhou, 310027, China.
Sci Rep. 2017 Sep 22;7(1):12162. doi: 10.1038/s41598-017-11281-2.
Decreasing the mutual coupling between Multi-input Multi-output (MIMO) antenna elements in a mobile handset and achieving a high data rate is a challenging topic as the 5-generation (5G) communication age is coming. Conventional decoupling components for MIMO antennas have to be re-designed when the geometries or frequencies of antennas have any adjustment. In this paper, we report a novel metamaterial-based decoupling strategy for MIMO antennas in mobile handsets with wide applicability. The decoupling component is made of subwavelength metal/air layers, which can be treated as singular medium over a broad frequency band. The flexible applicable property of the decoupling strategy is verified with different antennas over different frequency bands with the same metamaterial decoupling element. Finally, 1/100-wavelength 10-dB isolation is demonstrated for a 24-element MIMO antenna in mobile handsets over the frequency band from 4.55 to 4.75 GHz.
随着第五代(5G)通信时代的到来,降低移动手机中多输入多输出(MIMO)天线元件之间的互耦并实现高数据速率是一个具有挑战性的课题。当MIMO天线的几何形状或频率有任何调整时,传统的MIMO天线去耦组件都必须重新设计。在本文中,我们报告了一种适用于移动手机MIMO天线的、具有广泛适用性的新型超材料去耦策略。该去耦组件由亚波长金属/空气层制成,在很宽的频带上可被视为单一介质。使用相同的超材料去耦元件,在不同频段的不同天线上验证了该去耦策略的灵活适用性。最后,在4.55至4.75 GHz频段内,对移动手机中的24元MIMO天线实现了1/100波长的10 dB隔离。