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Power balancing in FBMC-MISO systems

机译:FBMC-MISO系统中的功率平衡

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This paper addresses the fairness in power allocation optimization for FBMC-MISO systems. Given a power budget we have proposed a sub-optimal strategy to distribute the power among the subcarriers. Firstly, with the aim of mitigating the interference terms as much as possible two precoding techniques have been proposed: WMF and Tx-MDIR. As a benchmark we have considered a transmit filter that is designed according to the ZF criterion. Then, assuming that the noise power dominates over the interferences we have allocated the power according to the solution provided by the max-min SINR problem which balances the SINRs. When the channel can be assumed flat in the subcarrier pass band region both ZF and Tx-MDIR can take advantage of the power control to achieve a BER equal to 10 by saving 3dB in the transmitted power with respect to the uniform power allocation strategy. Simulation-based results have shown that for very frequency selective channels the BER plot of ZF exhibits an error floor. In this scenario, Tx-MDIR and WMF are able to boost the BER in the Eb/N0 range [15dB-30dB] and [24dB-30dB], respectively.
机译:本文讨论了FBMC-MISO系统在功率分配优化中的公平性。在给定功率预算的情况下,我们提出了次优策略来在子载波之间分配功率。首先,为了尽可能减少干扰项,已经提出了两种预编码技术:WMF和Tx-MDIR。作为基准,我们考虑了根据ZF标准设计的发射滤波器。然后,假设噪声功率占主导地位,我们已经根据最大-最小SINR问题提供的解决方案分配了功率,该问题平衡了SINR。当可以假设子载波通带区域中的信道平坦时,相对于统一功率分配策略,ZF和Tx-MDIR都可以利用功率控制优势,通过节省3dB的发射功率来实现等于10的BER。基于仿真的结果表明,对于非常有频率选择的信道,ZF的BER曲线显示出错误底限。在这种情况下,Tx-MDIR和WMF能够分别在Eb / N0范围[15dB-30dB]和[24dB-30dB]中提高BER。

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