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Transmit Beamforming with Power Adaptation in Downlink Multi-User Systems

机译:下行多用户系统中具有功率自适应的发射波束成形

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This paper addresses power adaptation in the context of beamforming in the downlink of a cellular system. Specifically, we consider a system consisting of a base station (BS) with multiple antennas and multiple users each with a single antenna, in which the BS selects the user with the best channel for transmission. Compared to the scheme minimizing the bit error rate (BER) using a fixed instantaneous power, the BER performance can be further improved by adapting the instantaneous power according to the channel of the selected user. The optimal power adaptation (OPA) policy is derived, and its BER is compared with the case of a sub-optimal policy called channel inversion (CI). With a novel analytical approach, the BER performances of OPA and CI are quantified and CI is shown to be near-optimal for a multi-user multi-antenna system at moderate to large SNR, unlike the single-user single-antenna case. Finite peak power constraint is also considered for both OPA and CI.
机译:本文探讨了蜂窝系统下行链路中波束成形环境下的功率自适应。具体来说,我们考虑一个系统,该系统由具有多个天线的基站(BS)和每个具有单个天线的多个用户组成,其中BS选择具有最佳信道进行传输的用户。与使用固定瞬时功率最小化误码率(BER)的方案相比,可以通过根据所选用户的信道调整瞬时功率来进一步提高BER性能。推导最佳功率适应(OPA)策略,并将其BER与称为信道反转(CI)的次优策略的情况进行比较。使用新颖的分析方法,可以量化OPA和CI的BER性能,并且对于中度到大型SNR的多用户多天线系统,CI被证明是接近最佳的,这与单用户单天线情况不同。 OPA和CI均考虑了有限的峰值功率约束。

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