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Achievable Rates of Multi-Antenna Downlink Channels with Peak Power Constraints

机译:具有峰值功率约束的多天线下行链路信道的可达到速率

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This paper considers a Gaussian multiple-input single-output (MISO) broadcast channel with a per-antenna peak power constraint (or simply peak power constraint). It is more realistic to consider the peak power constraint on each transmit antenna because in many practical implementations each antenna is equipped with its own power amplifier. Assuming the perfect knowledge of the channel state information (CSI) at the transmitter, we propose an achievable scheme using dirty-tape coding (DTC). The ideal dirty-paper coding (DPC), which is a capacity-achieving scheme for the Gaussian multiple-input multiple-output (MIMO) broadcast channel, cannot be used for our model because its optimal input distribution is Gaussian and thus the peak power constraint is violated. On the other hand, the channel input of DTC is uniformly distributed in a fixed range, which helps to control the peak power of the transmit signal easily. We also present an algorithm that finds capacity-achieving beamforming vectors and power allocation factors under a per-antenna average power constraint and use the optimized parameters in the proposed scheme. Simulation results show that the proposed scheme provides gains of 2.7dB over a non-DTC scheme based on minimum mean square error (MMSE) beamforming at high signal-to-noise ratio (SNR) when there are three receivers and the transmitter has three antennas.
机译:本文考虑了具有每个天线峰值功率约束(或简称为峰值功率约束)的高斯多输入单输出(MISO)广播信道。考虑每个发射天线上的峰值功率约束更为现实,因为在许多实际实现中,每个天线都配备有自己的功率放大器。假定在发射机处对信道状态信息(CSI)有完备的知识,我们提出了一种使用脏磁带编码(DTC)的可实现方案。理想脏纸编码(DPC)是高斯多输入多输出(MIMO)广播信道的一种容量实现方案,不能用于我们的模型,因为其最佳输入分布是高斯,因此峰值功率违反约束。另一方面,DTC的通道输入均匀地分布在固定范围内,这有助于轻松控制发射信号的峰值功率。我们还提出了一种算法,该算法在每个天线的平均功率约束下找到可实现容量的波束成形矢量和功率分配因子,并在所提出的方案中使用优化的参数。仿真结果表明,在具有三个接收器且发射器具有三个天线的情况下,该方案比基于高均信噪比(SNR)的最小均方误差(MMSE)波束成形的非DTC方案提供了2.7dB的增益。 。

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