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Transmit beamforming for MISO frequency-selective channels with total and per-antenna power constraints

机译:具有总和每个天线功率限制的MISO频率选择信道的发射波束成形

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We consider the problem of transmit beamforming (BF) design for cyclic prefixed (CP) transmissions over MISO frequency selective channels. Both CP single carriers (SC) and orthogonal frequency-division multiplexing (OFDM) systems are investigated. To reduce receiver complexity, frequency domain BF is adopted. The BF is designed by minimizing the arithmetic mean of the error probabilities at the receiver, first under the total power constraint (TPC) and then under the per-antenna power constraint (PPC). The solutions under the PPC are obtained using convex optimization tools. The simulation results show that although BF for SC only slightly outperforms BF for OFDM under TPC, the gap in performance becomes large under PPC. It is also shown that for large number of transmit antennas, the phase-rotation BF (PRB) is nearly optimal under PPC.
机译:我们考虑了MISO频率选择信道上的循环前缀(CP)传输的发射波束成形(BF)设计问题。 CP单载波(SC)和正交频分复用(OFDM)系统都得到了研究。为了降低接收机的复杂度,采用了频域BF。首先通过在总功率约束(TPC)下,然后在每天线功率约束(PPC)下最小化接收器的错误概率的算术平均值来设计BF。 PPC下的解决方案是使用凸优化工具获得的。仿真结果表明,尽管在TPC下SC的BF仅略微超过OFDM BF,但在PPC下性能差距变大。还表明,对于大量发射天线,在PPC下,相位旋转BF(PRB)几乎是最佳的。

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