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Downlink beamforming subject to the equivalent isotropic radiated power constraint in WLAN OFDM systems

机译:WLAN OFDM系统中受到等效全向辐射功率约束的下行链路波束成形

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摘要

Range extension by means of downlink beamforming in a wireless local area network (WLAN) orthogonal frequency-division multiplexing (OFDM) system is addressed. A maximum ratio (MR) combining beamformer scaled according to the equivalent isotropic radiated power (EIRP) constraint adopted in the European regulations, is compared to the conventional total power (TP) restricted solution in typical propagation conditions. It is shown that the EIRP-scaled MR beamformer demonstrates significant performance degradation compared to the TP case. A joint optimization problem for the beamforming weights over all the sub-carriers subject to the EIRP constraint is formulated based on maximization of the minimum signal-to-noise ratio (SNR) over all the working sub-carriers at the receiver. A two-stage sub-optimal solution is proposed that exploits optimization over groups of non-adjacent sub-carriers and normalization to maintain the overall EIRP constraint. Its efficiency is illustrated by means of comparison with the EIRP-scaled MR beamformer and another sub-optimal algorithm based on the conventional grouping of highly correlated sub-carriers in the IEEE 802.11 environment.
机译:解决了在无线局域网(WLAN)正交频分复用(OFDM)系统中借助于下行链路波束成形的范围扩展。在典型的传播条件下,将根据欧洲法规采用的等效各向同性辐射功率(EIRP)约束缩放的最大比率(MR)组合波束形成器与常规总功率(TP)限制解决方案进行了比较。结果表明,与TP情况相比,EIRP缩放的MR波束形成器表现出明显的性能下降。基于接收器上所有工作子载波的最小信噪比(SNR)的最大值,针对受EIRP约束的所有子载波的波束赋形权重提出了联合优化问题。提出了一个两阶段的次优解决方案,该方案利用不相邻子载波组的优化和归一化来维持总体EIRP约束。通过与EIRP缩放的MR波束形成器进行比较,以及在IEEE 802.11环境中基于传统的高相关子载波分组的次优算法的比较,说明了其效率。

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