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Analysis and Estimation of MIMO-SAR for Multi-antenna Mobile Handsets

机译:多天线手机的MIMO-SAR分析与估计

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Measuring multiple-input multiple-output (MIMO) specific absorption rate (SAR) is an important part of mobile handset evaluation, following the introduction of uplink MIMO transmission schemes in long-term evolution advanced systems. However, the measurement of MIMO-SAR is complex and time consuming. In this communication, six unique dual-antenna mobile handsets, including both typical and novel designs, are analyzed to determine the dependence of MIMO-SAR on antenna configuration and correlation. It is found that, for certain antenna configurations, the location of the maximum MIMO-SAR and the corresponding relative phase between the ports can be predicted. This can be applied to drastically reduce measurement time. In addition, dual antennas with low envelope correlation coefficients in the radiation patterns also offer near-orthogonal electric near fields. This leads to smaller MIMO-SAR than stand-alone SAR (S-SAR) over all relative phases, making MIMO-SAR measurement unnecessary. The results also provide guidelines for designing multi-antenna handsets with low SARs. For verification, the S-SAR and MIMO-SAR at a relative phase of 0° were measured for several prototypes. The measured SAR distributions showed good agreement with the simulated ones.
机译:在长期演进高级系统中引入上行链路MIMO传输方案之后,测量多输入多输出(MIMO)比吸收率(SAR)是手机评估的重要组成部分。然而,MIMO-SAR的测量是复杂且耗时的。在此通信中,分析了六个独特的双天线手机,包括典型设计和新颖设计,以确定MIMO-SAR对天线配置和相关性的依赖性。发现,对于某些天线配置,可以预测最大MIMO-SAR的位置以及端口之间的相应相对相位。这可用于大大减少测量时间。此外,在辐射方向图上具有低包络相关系数的双天线还提供了近正交的电近场。这导致在所有相对相位上的MIMO-SAR比独立SAR(S-SAR)小,从而无需进行MIMO-SAR测量。结果还为设计低SAR的多天线手机提供了指导。为了验证,针对几个原型测量了相对相位为0°的S-SAR和MIMO-SAR。测得的SAR分布与仿真结果吻合良好。

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