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Transmitter Optimization for the Multi-Antenna Downlink With Per-Antenna Power Constraints

机译:具有每个天线功率约束的多天线下行链路的发射机优化

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This paper considers the transmitter optimization problem for a multiuser downlink channel with multiple transmit antennas at the base-station. In contrast to the conventional sum-power constraint on the transmit antennas, this paper adopts a more realistic per-antenna power constraint, because in practical implementations each antenna is equipped with its own power amplifier and is limited individually by the linearity of the amplifier. Assuming perfect channel knowledge at the transmitter, this paper investigates two different transmission schemes under the per-antenna power constraint: a minimum-power beamforming design for downlink channels with a single antenna at each remote user and a capacity-achieving transmitter design for downlink channels with multiple antennas at each remote user. It is shown that in both cases, the per-antenna downlink transmitter optimization problem may be transformed into a dual uplink problem with an uncertain noise. This generalizes previous uplink-downlink duality results and transforms the per-antenna transmitter optimization problem into an equivalent minimax optimization problem. Further, it is shown that various notions of uplink-downlink duality may be unified under a Lagrangian duality framework. This new interpretation of duality gives rise to efficient numerical optimization techniques for solving the downlink per-antenna transmitter optimization problem
机译:本文考虑了基站具有多个发射天线的多用户下行链路信道的发射器优化问题。与传统的发射天线总和功率约束相比,本文采用了更现实的每天线功率约束,因为在实际实现中,每个天线都配备有自己的功率放大器,并且分别受到放大器线性度的限制。假设发射机具有完善的信道知识,本文研究了在每个天线功率约束下的两种不同的传输方案:针对每个远程用户使用单个天线的下行链路信道的最小功率波束成形设计和针对下行链路信道的容量实现发射机设计每个远程用户使用多个天线。结果表明,在两种情况下,每个天线的下行链路发射机优化问题都可以转化为具有不确定噪声的双上行链路问题。这概括了先前的上行链路-下行链路对偶结果,并将每个天线的发射机优化问题转换为等效的minimax优化问题。此外,示出了可以在拉格朗日对偶性框架下统一上行链路-下行链路对偶性的各种概念。对偶性的这种新解释产生了用于解决下行链路每天线发射机优化问题的有效数值优化技术。

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