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Multi-cell uplink-downlink beamforming throughput duality based on Lagrangian duality with per-base station power constraints

机译:基于拉格朗日对偶并具有每基站功率约束的多小区上行链路-下行链路波束成形吞吐量对偶

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摘要

Despite significant research efforts in beamforming, the maximum achievable downlink throughput with beamforming in a multi-cell environment is not available due to difficulty in finding optimal downlink beamforming. Thus, to reformulate the problem into a more solvable form, we derive dual uplink throughput optimization problem to multi-cell downlink beam- forming throughput maximization with per-base station (BS) power constraints based on Lagrangian duality. The optimal downlink beamforming is shown to be a minimum mean squared error (MMSE) beamforming in the dual uplink. It is also shown that the dual uplink problem achieves the same optimal throughput as the primal downlink problem.
机译:尽管在波束成形方面进行了大量研究工作,但是由于难以找到最佳的下行链路波束成形,因此在多小区环境中使用波束成形无法实现的最大可实现下行链路吞吐量。因此,为了将问题重新表述为更可解决的形式,我们将双上行链路吞吐量优化问题推导到基于拉格朗日对偶性的具有每个基站(BS)功率约束的多小区下行链路波束成形吞吐量最大化。最佳下行链路波束成形显示为双上行链路中的最小均方误差(MMSE)波束成形。还表明,双上行链路问题实现了与原始下行链路问题相同的最佳吞吐量。

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