Projekt per år
Sammanfattning
Measuring MIMO-SAR is an important part of mobile handset evaluation, following the introduction of uplink MIMO transmission schemes in LTE-Advanced. However, the measurement of MIMO-SAR is complex and time-consuming. In this paper, 6 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 relative phase of 0° were measured for several handsets. The measured SAR distributions showed good agreement with the simulated ones.
Originalspråk | engelska |
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Sidor (från-till) | 1522 - 1527 |
Tidskrift | IEEE Transactions on Antennas and Propagation |
DOI | |
Status | Published - 2017 |
Ämnesklassifikation (UKÄ)
- Telekommunikation
Fingeravtryck
Utforska forskningsämnen för ”Analysis and estimation of MIMO-SAR for multi-antenna mobile handsets”. Tillsammans bildar de ett unikt fingeravtryck.-
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EIT_Optantsys Novel Antenna System Design Paradigm for High Performance Mobile Communications
Sunesson, A., Li, H., VASILEV, I., Lindstrand, J., Tian, R., Zhang, S., Miers, Z., Lau, B. K., Plicanic, V. & Sjöland, H.
2011/10/01 → 2019/12/31
Projekt: Forskning