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MIMO in vivo

机译:实时MIMO

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摘要

We present the performance of MIMO for in vivo environments, using ANSYS HFSS and their complete human body model, to determine the maximum data rates that can be achieved using an IEEE 802.11n system. Due to the lossy nature of the in vivo medium, achieving high data rates with reliable performance will be a challenge, especially since the in vivo antenna performance is strongly affected by near-field coupling to the lossy medium and the signals levels will be limited by specified specific absorption rate (SAR) levels. We analyzed the bit error rate (BER) of a MIMO system with one pair of antennas placed in vivo and the second pair placed inside and outside the body at various distances from the in vivo antennas. The results were compared to SISO arrangements and showed that by using MIMO in vivo, significant performance gain can be achieved, and at least two times the data rate can be supported with SAR limited transmit power levels, making it possible to achieve target data rates in the 100 Mbps.
机译:我们使用ANSYS HFSS及其完整的人体模型介绍了在体内环境中MIMO的性能,以确定使用IEEE 802.11n系统可以实现的最大数据速率。由于体内介质的有损特性,以可靠的性能实现高数据速率将是一个挑战,特别是因为体内天线的性能会受到与有损介质的近场耦合的强烈影响,并且信号电平会受到限制。指定的比吸收率(SAR)级别。我们分析了MIMO系统的误码率(BER),其中一对天线放置在体内,第二对天线放置在距体内天线不同距离的体内和体外。将结果与SISO安排进行了比较,结果表明,通过在体内使用MIMO,可以实现显着的性能增益,并且在SAR受限的发射功率水平下,数据速率至少可以支持两倍,从而有可能在SAR中达到目标数据速率。 100 Mbps。

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