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A peak power aware linear-precoding scheme for MIMO-SDM systems

机译:用于MIMO-SDM系统的峰值功率感知线性预编码方案

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In MIMO space division multiplexing (SDM) systems, the peak power of the transmit signal at each antenna element is increased by the precoder and hence it causes the power efficiency degradation and/or nonlinear distortion at the power amplifier. To solve this problem, this paper present a peak power aware precoding scheme for MIMO-SDM systems, where the precoder is designed to mitigate the peak output power at each antenna element so that peak amplitude of the transmit signal at each antenna is reduced while minimizing the performance degradation caused by the peak power restriction. The proposed system employs an alternative iterative optimization algorithm that determines the precoding matrix so that the precoding and virtual post-coding matrices are alternatively optimized under the constraint of peak output at each antenna element. Simulation results show that the proposed method is effective in restricting the peak transmission power at each antenna within a permissible level while mitigating performance degradation in bit error rate (BER) performance of the precoded SDM systems.
机译:在MIMO空分复用(SDM)系统中,每个天线元件处的发射信号的峰值功率被预编码器增加,因此导致功率放大器的功率效率下降和/或非线性失真。为了解决这个问题,本文提出了一种用于MIMO-SDM系统的峰值功率感知预编码方案,该预编码器旨在减轻每个天线元件的峰值输出功率,从而在最小化每个天线的同时降低发射信号的峰值幅度。峰值功率限制导致性能下降。所提出的系统采用另一种迭代优化算法,该算法确定预编码矩阵,以便在每个天线单元的峰值输出约束下,对预编码和虚拟后编码矩阵进行交替优化。仿真结果表明,所提出的方法可以有效地将每个天线的峰值发射功率限制在允许的水平内,同时可以减轻预编码SDM系统的误码率(BER)性能的性能下降。

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