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Precoding for multiple-input multiple-output systems with space–time block coding over correlated rician fading channels

机译:在相关rician衰落信道上使用时空块编码对多输入多输出系统进行预编码

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摘要

Based on the asymptotic analysis in spatially correlated Rician fading channel, the precoders for space-time block-coded multiple-input multiple-output system at high and low signal-to-noise ratios (SNRs) are, respectively, designed to minimise the system bit error rate (BER). The precoding for high SNR provides closed-form positive power allocation by using the Langrage optimisation method, and has the BER performance close to that of the optimal scheme, especially at high SNR. The Langrage multiplier does exist and is unique, and practical Newton's method is proposed to find its optimal value. Moreover, it has a closed-form solution for some special cases. Thus, it avoids the iterative calculation of some existing precoding schemes. The precoding for low SNR has a closed-form solution similar to onedirectional (1-D) beamforming, and can obtain the performance very close to that of the optimal scheme at low SNR. By combining the above two schemes, a simple and effective suboptimal precoding scheme can be achieved for different SNRs. Simulation results show that the proposed scheme derived from the integration of high and low SNR can provide BER lower than the equal power precoding, and obtain the BER performance close to that of the existing optimal scheme with low complexity.
机译:基于空间相关Rician衰落信道中的渐近分析,分别设计了高信噪比(SNR)和低信噪比(SNR)时空块编码多输入多输出系统的预编码器,以最大程度地减少系统误码率(BER)。高信噪比的预编码通过使用Langrage优化方法提供封闭形式的正功率分配,并且BER性能接近最佳方案,尤其是在高信噪比时。 Langrage乘数确实存在并且是唯一的,并提出了实用的牛顿法来找到其最佳值。此外,对于某些特殊情况,它具有封闭形式的解决方案。因此,它避免了一些现有预编码方案的迭代计算。低SNR的预编码具有类似于单向(1-D)波束成形的封闭形式解决方案,并且在低SNR时可以获得与最佳方案非常接近的性能。通过结合以上两种方案,可以针对不同的SNR实现简单有效的次优预编码方案。仿真结果表明,所提出的高信噪比和低信噪比融合方案能够提供比等功率预编码更低的误码率,并且其误码率性能与现有最优方案的低复杂度相近。

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    《Communications, IET》 |2014年第2期|163-171|共9页
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