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Diversity Performance of Off-Body MB-OFDM UWB-MIMO

机译:离体MB-OFDM UWB-MIMO的分集性能

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摘要

This paper introduces a novel formalism to improve the performance of an off-body system by deploying multiple ultra wideband (UWB) antennas, positioned strategically on the body. A methodology is presented for determining the optimal positions of UWB antennas on the body, necessary to provide a reliable multiband orthogonal frequency division multiplexing (MB-OFDM) UWB diversity antenna system operating in the Federal Communications Commission frequency band between 3.1 and 10.6 GHz. By evaluating the diversity metric, using simulation and measurement data, it is shown that the performance of such a system is stable throughout the entire investigated frequency band for both indoor and outdoor environments. There is a good agreement between the simulated and measured diversity values with a deviation of less than 9%. Therefore, the proposed technique optimizes the antennas’ positions for maximum diversity performance within a very broad frequency band, independent of the used wireless communication standard. Thus, the obtained diversity system might be used in any kind of wireless communication link within that frequency band, e.g., UWB-OFDM, UWB MB-OFDM, UWB, or even narrowband transmission.
机译:本文介绍了一种新颖的形式主义,可通过在战略上部署在身体上的多个超宽带(UWB)天线来提高体外系统的性能。提出了一种方法,用于确定UWB天线在人体上的最佳位置,这是提供在3.1至10.6 GHz之间的联邦通信委员会频带中运行的可靠多频带正交频分复用(MB-OFDM)UWB分集天线系统所必需的。通过使用模拟和测量数据评估分集度量,可以证明这种系统的性能在室内和室外环境的整个调查频段内都是稳定的。模拟和测量的分集值之间的一致性很好,偏差小于9%。因此,所提出的技术可以在非常宽的频带内优化天线的位置,以实现最大的分集性能,而与所使用的无线通信标准无关。因此,所获得的分集系统可以在该频带内的任何种类的无线通信链路中使用,例如,UWB-OFDM,UWB MB-OFDM,UWB或什至窄带传输。

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