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Impact of Antenna Design on MIMO Performance for Compact Terminals With Adaptive Impedance Matching

机译:自适应阻抗匹配的紧凑型终端天线设计对MIMO性能的影响

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Using the metrics of channel capacity and multiplexing efficiency, the adaptive impedance matching (AIM) performances of two multiple-input multiple-output (MIMO) terminals with different antenna designs were evaluated and compared. The evaluation was performed in LTE Band 18 Downlink (860–875 MHz) under realistic usage conditions of two measured user handgrips and simulated propagation channels with different angular spreads (ASs). The results provide potential performance gains from AIM based on realistic MIMO terminal prototypes, and the underlying mechanisms by which the gains were achieved, which can serve as antenna and AIM circuit design guidelines. In particular, the evaluation revealed that ideal uncoupled AIM networks can increase the capacity by up to 52% relative to terminations. However, the observed gains depend heavily on the antenna design, the user scenario, and the channel’s AS. For example, the wideband design in different user cases experienced capacity gain of 4%–9% from AIM in uniform 3-D channels, in contrast to the 1.3%–44% gain seen in a conventional narrowband design. In nonuniform channels with small ASs, the AIM gain for different mean incident angles depends on the absolute mean effective gain (MEG) and the change in correlation due to AIM; in cases where AIM has little impact on correlation, the mean incident angles with high AIM gains were close to those with high MEGs.
机译:使用信道容量和复用效率的度量,评估并比较了具有不同天线设计的两个多输入多输出(MIMO)终端的自适应阻抗匹配(AIM)性能。评估是在LTE Band 18下行链路(860–875MHz)中,在两个测量的用户手柄和具有不同角度扩展(AS)的模拟传播信道的实际使用条件下进行的。结果为基于实际MIMO终端原型的AIM提供了潜在的性能增益,以及实现增益的基本机制,可以用作天线和AIM电路设计指南。特别是,评估显示,理想的未耦合AIM网络可以相对于终端将容量提高多达52%。但是,观察到的增益在很大程度上取决于天线设计,用户情况和信道的AS。例如,在不同的用户情况下,宽带设计在统一的3-D通道中从AIM获得了4%–9%的容量增益,而传统的窄带设计却获得了1.3%–44%的增益。在具有较小AS的非均匀信道中,不同平均入射角的AIM增益取决于绝对平均有效增益(MEG)和AIM引起的相关性变化。在AIM对相关性影响不大的情况下,具有较高AIM增益的平均入射角接近具有较高MEG的平均入射角。

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