Beamforming for SC-FDMA transmission over MIMO ISI channels with decision-feedback equalization

U. L. Dang, Michael A. Ruder, W. Gerstacker, R. Schober
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引用次数: 2

Abstract

We consider transmit beamforming algorithms for single-carrier frequency-division multiple access (SC-FDMA) transmission over frequency-selective multiple-input multiple-output (MIMO) channels. The beamforming filters are designed for optimum performance of MIMO minimum mean-squared error decision-feedback equalization (MMSE-DFE). It turns out that eigenbeamforming diagonalizing the overall channel is optimum, and in addition an optimum power allocation has to be performed which is similar in spirit to classical results for the optimum continuous-time transmit filter for linear modulation formats obtained by Yang and Roy. Simulation results indicate that the proposed solution is beneficial for the block error rate performance of an SC-FDMA transmission scheme with strong channel coding and error-free decisions in the feedback path of MMSE-DFE, which can be guaranteed e.g. by equivalent Tomlinson-Harashima precoding at the transmitter side.
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具有决策反馈均衡的MIMO ISI信道上SC-FDMA传输波束形成
本文研究了单载波频分多址(SC-FDMA)在选频多输入多输出(MIMO)信道上的传输波束形成算法。针对MIMO最小均方误差决策反馈均衡(MMSE-DFE)的最佳性能,设计了波束形成滤波器。结果表明,本征波束形成对角化整个信道是最优的,此外,还必须进行最优功率分配,这与Yang和Roy获得的线性调制格式的最佳连续时间发射滤波器的经典结果在精神上相似。仿真结果表明,该解决方案有利于SC-FDMA传输方案的块错误率性能,该方案具有强信道编码和MMSE-DFE反馈路径中的无错误决策,可以通过在发送端等效Tomlinson-Harashima预编码来保证。
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