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Indoor off-body wireless communication: static beamforming versus space-time coding

机译:室内离体无线通信:静态波束成形与空时编码

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摘要

The performance of beamforming versus space-time coding using a body-worn textile antenna array is experimentally evaluated for an indoor environment, where a walking rescue worker transmits data in the 2.45 GHz ISM band, relying on a vertical textile four-antenna array integrated into his garment. The two transmission scenarios considered are static beamforming at low-elevation angles and space-time code based transmit diversity. Signals are received by a base station equipped with a horizontal array of four dipole antennas providing spatial receive diversity through maximum-ratio combining. Signal-to-noise ratios, bit error rate characteristics, and signal correlation properties are assessed for both off-body transmission scenarios. Without receiver diversity, the performance of space-time coding is generally better. In case of fourth-order receiver diversity, beamforming is superior in line-of-sight conditions. For non-line-of-sight propagation, the space-time codes perform better as soon as bit error rates are low enough for a reliable data link.
机译:在室内环境下,通过实验评估了使用穿戴式纺织天线阵列的波束成形与时空编码的性能,其中,步行救援人员依靠集成在其中的垂直纺织四天线阵列在2.45 GHz ISM频段上传输数据他的衣服。考虑的两个传输方案是低仰角的静态波束成形和基于空时码的传输分集。信号由配备有四个偶极天线的水平阵列的基站接收,通过最大比率组合提供空间接收分集。对于两种体外传输情况,均会评估信噪比,误码率特性和信号相关特性。如果没有接收机分集,则空时编码的性能通常会更好。在四阶接收机分集的情况下,波束形成在视线条件下更为出色。对于非视距传播,只要误码率足够低,就可以保证可靠的数据链路,那么时空代码的性能就会更好。

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